2017年10月14日星期六

Tumor lymphangiogenesis promotes T cell infiltration and potentiates immunotherapy in melanoma

Topics overview: VEGF-C as a predictive biomarker for immunotherapy response, peptide probes could become an early diagnostic strategy, hiPSC-EPO cells may be a useful tool for clarifying the mechanisms of EPO production, rapid antigen tests for dengue virus serotypes and Zika virus, integrated hepatitis B virus DNA is a source of HBsAg.

1. Tumor lymphangiogenesis promotes T cell infiltration and potentiates immunotherapy in melanoma

In melanoma, vascular endothelial growth factor–C (VEGF-C) expression and consequent lymphangiogenesis correlate with metastasis and poor prognosis. VEGF-C also promotes tumor immunosuppression, suggesting that lymphangiogenesis inhibitors may be clinically useful in combination with immunotherapy. Manuel Fankhauser at Swiss Federal Institute of Technology Lausanne (EPFL) in Lausanne, Switzerland and his colleagues addressed this concept in mouse melanoma models with VEGF receptor–3 (VEGFR-3)–blocking antibodies and unexpectedly found that VEGF-C signaling enhanced rather than suppressed the response to immunotherapy. They further found that this effect was mediated by VEGF-C–induced CCL21 and tumor infiltration of naïve T cells before immunotherapy because CCR7 blockade reversed the potentiating effects of VEGF-C. In human metastatic melanoma, gene expression of VEGF-C strongly correlated with CCL21 and T cell inflammation, and serum VEGF-C concentrations associated with both T cell activation and expansion after peptide vaccination and clinical response to checkpoint blockade. They propose that VEGF-C potentiates immunotherapy by attracting naïve T cells, which are locally activated upon immunotherapy-induced tumor cell killing, and that serum VEGF-C may serve as a predictive biomarker for immunotherapy response.

Read more, please click http://stm.sciencemag.org/content/9/407/eaal4712

2. Peptide probes detect misfolded transthyretin oligomers in plasma of hereditary amyloidosis patients

Increasing evidence supports the hypothesis that soluble misfolded protein assemblies contribute to the degeneration of postmitotic tissue in amyloid diseases. However, there is a dearth of reliable nonantibody-based probes for selectively detecting oligomeric aggregate structures circulating in plasma or deposited in tissues, making it difficult to scrutinize this hypothesis in patients. Hence, understanding the structure-proteotoxicity relationships driving amyloid diseases remains challenging, hampering the development of early diagnostic and novel treatment strategies. Joseph D. Schonhoft at The Scripps Research Institute in La Jolla, USA and his colleagues report peptide-based probes that selectively label misfolded transthyretin (TTR) oligomers circulating in the plasma of TTR hereditary amyloidosis patients exhibiting a predominant neuropathic phenotype. These probes revealed that there are much fewer misfolded TTR oligomers in healthy controls, in asymptomatic carriers of mutations linked to amyloid polyneuropathy, and in patients with TTR-associated cardiomyopathies. The absence of misfolded TTR oligomers in the plasma of cardiomyopathy patients suggests that the tissue tropism observed in the TTR amyloidoses is structure-based. Misfolded oligomers decrease in TTR amyloid polyneuropathy patients treated with disease-modifying therapies (tafamidis or liver transplant–mediated gene therapy). In a subset of TTR amyloid polyneuropathy patients, the probes also detected a circulating TTR fragment that disappeared after tafamidis treatment. Proteomic analysis of the isolated TTR oligomers revealed a specific patient-associated signature composed of proteins that likely associate with the circulating TTR oligomers. Quantification of plasma oligomer concentrations using peptide probes could become an early diagnostic strategy, a response-to-therapy biomarker, and a useful tool for understanding structure-proteotoxicity relationships in the TTR amyloidoses.

Read more, please click http://stm.sciencemag.org/content/9/407/eaam7621

3. Human pluripotent stem cell–derived erythropoietin-producing cells ameliorate renal anemia in mice

The production of erythropoietin (EPO) by the kidneys, a principal hormone for the hematopoietic system, is reduced in patients with chronic kidney disease (CKD), eventually resulting in severe anemia. Although recombinant human EPO treatment improves anemia in patients with CKD, returning to full red blood cell production without fluctuations does not always occur. Hirofumi Hitomi at Center for iPS Cell Research and Application, Kyoto University in Kyoto, Japan and his colleagues established a method to generate EPO-producing cells from human induced pluripotent stem cells (hiPSCs) by modifying previously reported hepatic differentiation protocols. These cells showed increased EPO expression and secretion in response to low oxygen conditions, prolyl hydroxylase domain–containing enzyme inhibitors, and insulin-like growth factor 1. The EPO protein secreted from hiPSC-derived EPO-producing (hiPSC-EPO) cells induced the erythropoietic differentiation of human umbilical cord blood progenitor cells in vitro. Furthermore, transplantation of hiPSC-EPO cells into mice with CKD induced by adenine treatment improved renal anemia. Thus, hiPSC-EPO cells may be a useful tool for clarifying the mechanisms of EPO production and may be useful as a therapeutic strategy for treating renal anemia.

Read more, please click http://stm.sciencemag.org/content/9/409/eaaj2300

4. Rapid antigen tests for dengue virus serotypes and Zika virus in patient serum

The recent Zika virus (ZIKV) outbreak demonstrates that cost-effective clinical diagnostics are urgently needed to detect and distinguish viral infections to improve patient care. Unlike dengue virus (DENV), ZIKV infections during pregnancy correlate with severe birth defects, including microcephaly and neurological disorders. Because ZIKV and DENV are related flaviviruses, their homologous proteins and nucleic acids can cause cross-reactions and false-positive results in molecular, antigenic, and serologic diagnostics. Irene Bosch at Massachusetts Institute of Technology in Cambridge, USA and her colleagues report the characterization of monoclonal antibody pairs that have been translated into rapid immunochromatography tests to specifically detect the viral nonstructural 1 (NS1) protein antigen and distinguish the four DENV serotypes (DENV1–4) and ZIKV without cross-reaction. To complement visual test analysis and remove user subjectivity in reading test results, they used image processing and data analysis for data capture and test result quantification. Using a 30-μl serum sample, the sensitivity and specificity values of the DENV1–4 tests and the pan-DENV test, which detects all four dengue serotypes, ranged from 0.76 to 1.00. Sensitivity/specificity for the ZIKV rapid test was 0.81/0.86, respectively, using a 150-μl serum input. Serum ZIKV NS1 protein concentrations were about 10-fold lower than corresponding DENV NS1 concentrations in infected patients; moreover, ZIKV NS1 protein was not detected in polymerase chain reaction–positive patient urine samples. Their rapid immunochromatography approach and reagents have immediate application in differential clinical diagnosis of acute ZIKV and DENV cases, and the platform can be applied toward developing rapid antigen diagnostics for emerging viruses.

Read more, please click http://stm.sciencemag.org/content/9/409/eaan1589

5. RNAi-based treatment of chronically infected patients and chimpanzees reveals that integrated hepatitis B virus DNA is a source of HBsAg

Chronic hepatitis B virus (HBV) infection is a major health concern worldwide, frequently leading to liver cirrhosis, liver failure, and hepatocellular carcinoma. Evidence suggests that high viral antigen load may play a role in chronicity. Production of viral proteins is thought to depend on transcription of viral covalently closed circular DNA (cccDNA). In a human clinical trial with an RNA interference (RNAi)–based therapeutic targeting HBV transcripts, ARC-520, HBV S antigen (HBsAg) was strongly reduced in treatment-naïve patients positive for HBV e antigen (HBeAg) but was reduced significantly less in patients who were HBeAg-negative or had received long-term therapy with nucleos(t)ide viral replication inhibitors (NUCs). HBeAg positivity is associated with greater disease risk that may be moderately reduced upon HBeAg loss. The molecular basis for this unexpected differential response was investigated by Christine I. Wooddell at Arrowhead Pharmaceuticals in Madison, USA and his colleagues in chimpanzees chronically infected with HBV. Several lines of evidence demonstrated that HBsAg was expressed not only from the episomal cccDNA minichromosome but also from transcripts arising from HBV DNA integrated into the host genome, which was the dominant source in HBeAg-negative chimpanzees. Many of the integrants detected in chimpanzees lacked target sites for the small interfering RNAs in ARC-520, explaining the reduced response in HBeAg-negative chimpanzees and, by extension, in HBeAg-negative patients. Their results uncover a heretofore underrecognized source of HBsAg that may represent a strategy adopted by HBV to maintain chronicity in the presence of host immunosurveillance. These results could alter trial design and endpoint expectations of new therapies for chronic HBV.

Read more, please click http://stm.sciencemag.org/content/9/409/eaan0241

EliKine™ Human TGF-β1 ELISA Kit review

EliKine™ Human TGF-β1 ELISA Kit reviewTGF-β is capable of producing a variety of effects and virtually all cell types respond to this factor in some way. The inappropriate presence of active TGF-β1 has been implicated in a variety of pathological conditions Because of the necessity for regulating its activity tightly, TGF-β is secreted by cells in the form of an inactive complex. This complex consists of TGF-β1 associated non-covalently with a protein designated the latency associated peptide (LAP). TGF-β1 and LAP represent components of a pro-peptide that is cleaved in a post-golgi compartment prior to secretion. LAP and TGF-β1 each consist of a disulfide-linked homodimer and the association of these two components renders TGF-β1 inactive and inaccessible to anti-TGF-β antibodies.

EliKine™ Human TGF-β1 ELISA Kit employs a two-site sandwich ELISA to quantitate TGF-β1 in samples. An antibody specific for TGF-β1 has been pre-coated onto a microplate. Standards and samples are pipetted into the wells and any TGF-β1 present is bound by the immobilized antibody. After removing any unbound substances, a biotin-conjugated antibody specific for TGF-β1 is added to the wells. After washing, proprietary EliKine™ Streptavidin-HRP conjugates is added to the wells. Following a wash to remove any unbound streptavidin-enzyme reagent, a substrate solution is added to the wells and color develops in proportion to the amount of TGF-β1 bound in the initial step. The color development is stopped and the intensity of the color is measured.

EliKine™ Human TGF-β1 ELISA Kit was used to detect TGFB1 in Human serum. It meets our requirements very well. The detection range of this kit is from 15.625 pg/ml to 1000 pg/ml. The minimum detectable dose of Human TGFB1 is typically less than 8 pg/mL. No significant cross-reactivity or interference was found during the test. The design of 12 strips of 8 wells 96 well polystyrene microplates is very flexible. The unused wells can be stored at 2-8 ˚C for up to one month. The staffs are very professional and they reply timely.

2017年9月30日星期六

EliKine™ ELISA kits – the new addition to Abbkine’s scientific research kit family

EliKine™ ELISA kits – the new addition to Abbkine’s scientific research kit familyEliKine™ series of ELISA kits are the latest scientific research products from Abbkine Scientific Co. Ltd. The company recently announced the launch of EliKine™ ELISA kits, designed to enhance scientific research processes. EliKine™ series of ELISA kits exert high sensibility and specificity, with a comprehensive selection of ELISA kits available for the quantification of cytokines, hormones and other proteins, to meet experiment demands. The kits use colorimetric method of detection, suitable for multiple samples types-Plasma, Serum, Cell culture supernatants and other biological fluids.

EliKine sandwich ELISA kits depend on paired capture and biotinylated detection antibodies, which are both specific to the antigen with different epitopes, while competitive ELISA kits employ the competitive inhibition enzyme immunoassay technique with featured and specific detection antibodies. Exclusive EliKine™ streptavidin-HRP conjugate, and HRP substrate with other optimal components make EliKine portfolio be one of the best and most economical choices for ELISA assay researchers. The complete, ready-to-use ELISA Kits reduce assay time and are available in either 1 or 10 pre-coated plate options.

EliKine™ ELISA kits have several features which are unique and distinguish from others. The features of EliKine™ ELISA kits are highlighted below:
  • High efficiency, sensibility and specificity

  • Optimized proposal for high repeatability, more stable

  • 8 test pre-coated package for easy entrance

  • Strip microplate format with greater flexibility

  • Suitable for multiple types of samples

  • Professional technical support and after-sales service


Components of EliKine™ Sandwich ELISA Kits include:
  • 96-well strip microplate pre-coated with capture antibody

  • Biotinylated detect antibody

  • Analyte standard

  • EliKine™ streptavidin-HRP conjugate

  • Standard diluent

  • Assay buffer

  • HRP substrate

  • Stop solution

  • Wash buffer

  • Plate cover


Other information about EliKine™ ELISA kits and other research products from Abbkine can be found on www.abbkine.com.

About Abbkine Scientific Co. Ltd

Abbkine Scientific Co. Ltd was founded in 2012 by a team of scientists and marketing experts in the life science field in California, USA. Headquartered in China, Abbkine has effectively combined cutting edge technology from United States with China's manufacturing engineering and cost advantages to provide innovative, high quality assay kits, recombinant proteins, antibodies and other research tools to accelerate life science fundamental research and drug discovery.

2017年9月28日星期四

EliKine™ Human IL-6 ELISA Kit joins the Abbkine Scientific family

EliKine™ Human IL-6 ELISA Kit joins the Abbkine Scientific familyIL-6 gene encodes a cytokine, which functions in inflammation as well as the maturation of B cells. This is in addition to the encoded protein being shown to be an endogenous pyrogen capable of inducing fever in people with autoimmune diseases or infections. The - IL 6 Elisa kit is designed having the researcher or investigator in mind.

With human reactivity and colorimetric method of detection and limit of detection of 2 pg/mL, the kit employs a two-site sandwich ELISA to quantitate IL-6 in samples. The BSF2 Elisa kit as it is also referred to as has a calibration range of 3.125 pg/ml-200 pg/ml.

The IL6 Elisa kit has multiple steps standard sandwich ELISA assay with a working time of 3-5 hours, depending on the experience of the operation person. The sample type includes Cell culture supernatants, other biological fluids, Plasma, Serum.

The features and benefits of the kit include its high sensitivity and excellent specificity for detection of Human IL-6. The kit also has no significant cross-reactivity or interference between Human IL-6 and analogues.

Components of the kits include:
  • Human IL-6 microplate

  • Human IL-6 standard

  • Human IL-6 detect antibody

  • EliKine™ Streptavidin-HRP

  • Standard diluent

  • Assay buffer

  • HRP substrate

  • Stop solution

  • Wash buffer

  • Plate covers


Other information about the kit and other research products from Abbkine can be found on the company’s website.

About Abbkine Scientific Co. Ltd

Abbkine Scientific Co. Ltd was founded in 2012. The company set up by a number of scientists and marketing experts in the field of life science in California, USA. The company is headquartered in China and has combined innovative technology from United States with China's manufacturing engineering and cost advantages, providing high quality assay kits, recombinant proteins, antibodies and other research tools to accelerate life science fundamental research and drug discovery.

2017年9月27日星期三

EliKine™ Human CRP ELISA Kit Review

C-Reactive Protein (CRP), also known as Pentraxin 1, is a secreted pentameric protein that functions as a sensor and activator for the innate immune response. In humans, it is a major acute-phase protein; its circulating concentration is dramatically elevated at the onset of inflammation. In mice, however, serum CRP levels increase only slightly during inflammation, and the analogous acute phase role is filled by Pentraxin 2. CRP binds, opsonizes, and induces the phagocytosis of bacteria and apoptotic cells. It regulates activation of the classical complement pathway by binding several proteins in the complement cascade as well as Fc gamma RI, Fc gamma RIIA, and Fc gamma RIIB on macrophages and dendritic cells. It also promotes dendritic cell maturation and humoral immunity. In cardiovascular disease, CRP binds to oxidized LDL, exacerbates tissue damage in myocardial infarction, and inhibits the repair of injured vascular endothelium.

EliKine™ Human CRP ELISA Kit employs a two-site sandwich ELISA to quantitate CRP in samples. An antibody specific for CRP has been pre-coated onto a microplate. Standards and samples are pipetted into the wells and any CRP present is bound by the immobilized antibody. After removing any unbound substances, a biotin-conjugated antibody specific for CRP is added to the wells. After washing, proprietary EliKine™ Streptavidin-HRP conjugates is added to the wells. Following a wash to remove any unbound streptavidin-enzyme reagent, a substrate solution is added to the wells and color develops in proportion to the amount of CRP bound in the initial step. The color development is stopped and the intensity of the color is measured.

An accidental opportunity, I found Abbkine ELISA Kit. For first time, I just want to try it. I ordered the Human CRP ELISA Kit from Abbkine and want to detect endogenous CCL3 level in human cell culture supernatant. Quite unexpectedly, it brings me a good experience. The delivery time is very short. The experiment went well and I got satisfying results. The kit has high sensitivity and the price is cheaper than other brands. I want to recommend it to my friends.

2017年9月25日星期一

Review of IDE Monoclonal Antibody

IDE Monoclonal AntibodyAbbkine Scientific is a renowned research and life science company, offering several research solutions to investigators and researchers across the globe. The brand has grown to become one of the trusted names in the field of life science research, thanks to its innovative research tools and products. The Chinese based scientific research company recently announced the official launch of its new product – the IDE Monoclonal Antibody.

The IDE Monoclonal Antibody also referred to as IDE antibody or Insulin-degrading enzyme antibody follows the trend of premium quality and efficiency the Abbkine brand is known for. The Insulin protease antibody like its counterparts from the scientific research giant is designed to simplify and enhance research processes, consequently helping to achieve more results.

The IDE Monoclonal Antibody has been scrutinized by several people, with scientific researchers and investigators particularly reviewing the product. A more comprehensive review of the newly-launched IDE Monoclonal Antibody is done below.

Background of IDE Monoclonal Antibody

IDE encodes a zinc metallopeptidase, which degrades intracellular insulin, subsequently terminating insulin activity. It also participates in intercellular peptide signaling by degrading diverse peptides like glucagon, amylin, bradykinin, and kallidin. The preferential affinity of insulin degrading enzyme for insulin leads to insulin-mediated inhibition of the degradation of other peptides such as beta-amyloid. However, deficiencies in the function of this protein are associated with Alzheimer's disease and type 2 diabetes mellitus. However, mutations in IDE have not been discovered to be the cause for these diseases. Insulin degrading enzyme localizes primarily to the cytoplasm but in some cell types, localizes to the extracellular space, peroxisome, cell membrane as well as mitochondrion. Alternative splicing will result in multiple transcript variants encoding distinct isoforms. Additional transcript variants have been described however, have not been experimentally verified.

Features of the IDE Monoclonal Antibody

The IDE Monoclonal Antibody has several features. Some of the features it shares with its counterparts, while others are unique to the antibody and distinguish it from others.

The features of IDE Monoclonal Antibody are highlighted below:
  • Immunogen - Synthetic Peptide

  • Host – Mouse

  • Reactivity – Human

  • Applications – IF, IHC-p, WB

  • Colonality – Monoclonal

  • Isotype – Mouse IgG1

  • Formulation – liquid solution

  • Concentration – 1 mg/ml

  • Storage buffer – PBS, pH 7.4, containing 0.02% sodium azide as Preservative and 50% Glycerol

Pros of IDE Monoclonal Antibody

The product has been identified to have several pros, especially when compared with its counterparts from other manufacturers. The durability of the product is one of such pros. This is so as it lasts for as long as one year at -20°C from date of shipment if stored under the right condition.

The product’s availability in a liquid solution with flexible dilutions also helps investigators and researchers alike in terms of flexibility.

The antibody is also reported to be affinity-purified from mouse ascites by affinity-chromatography using specific immunogen.

Cons of IDE Monoclonal Antibody

There is currently no report of negative effects from the use of IDE Monoclonal Antibody. However, it is worth noting that the manufacturers have warned against the use of the product for human or clinical diagnosis, as it is strictly for research purposes only.

Conclusion

The IDE Monoclonal Antibody is another great product from Abbkine Scientific Company Limited. It tends to satisfy the needs of most scientific investigators and researchers.

2017年9月22日星期五

Structural basis of MsbA-mediated lipopolysaccharide transport

Topics overview: Type II CRISPR–Cas and Cas1–Cas2-mediated spacer, right-handed signalling pathway, how MC1R activity is modulated by ultraviolet irradiation, how ILC2 responses are regulated by other stimuli, MsbA-mediated lipopolysaccharide transport.

1. How type II CRISPR–Cas establish immunity through Cas1–Cas2-mediated spacer integration

CRISPR (clustered regularly interspaced short palindromic repeats) and the nearby cas (CRISPR-associated) operon establish an RNA-based adaptive immunity system in prokaryotes. Molecular memory is created when a short foreign DNA-derived prespacer is integrated into the CRISPR array as a new spacer. Whereas the RNA-guided CRISPR interference mechanism varies widely among CRISPR-Cas systems, the spacer integration mechanism is essentially identical. The conserved Cas1 and Cas2 proteins form an integrase complex consisting two distal Cas1 dimers bridged by a Cas2 dimer in the middle. The prespacer is bound by Cas1-Cas2 as a dual forked DNA, and the terminal 3’-OH of each 3’-overhang serves as an attacking nucleophile during integration. Importantly, the prespacer is preferentially integrated into the leader-proximal region of the CRISPR array, guided by the leader sequence and a pair of inverted repeats (IRs) inside the CRISPR repeat. Spacer integration in the most well-studied Escherichia coli Type I-E CRISPR system further relies on the bacterial Integration Host Factor (IHF). In Type II-A CRISPR, however, Cas1-Cas2 alone integrates spacer efficiently in vitro; other Cas proteins (Cas9 and Csn2) play accessory roles in prespacer biogenesis. Focusing on the Enterococcus faecalis Type II-A system, here Yibei Xiao at Department of Molecular Biology and Genetics, Cornell University in New York, USA and his colleagues report four structure snapshots of Cas1-Cas2 during spacer integration. EfaCas1-Cas2 selectively binds to a splayed 30-bp prespacer bearing 4-nt 3’-overhangs. Three molecular events take place upon encountering a target: Cas1-Cas2/prespacer first searches for half-sites stochastically, then preferentially interacts with the leader-side CRISPR repeat and catalyzes a nucleophilic attack that connects one strand of the leader-proximal repeat to the prespacer 3’-overhang. Recognition of the spacer half-site requires DNA bending and leads to full integration. The team derive a mechanistic framework explaining the stepwise spacer integration process and the leader-proximal preference.

Read more, please click http://www.nature.com/nature/journal/vaap/ncurrent/full/nature24020.html

2. A right-handed signalling pathway drives heart looping in vertebrates

Most animals show external bilateral symmetry, which hinders the observation of multiple internal left–right (L/R) asymmetries that are fundamental to organ packaging and function. In vertebrates, left identity is mediated by the left-specific Nodal–Pitx2 axis that is repressed on the right-hand side by the epithelial–mesenchymal transition (EMT) inducer Snail1 . Despite some existing evidence, it remains unclear whether an equivalent instructive pathway provides right-hand-specific information to the embryo. Here Oscar H. Ocaña at Instituto de Neurociencias (CSIC-UMH) in Alicante, Spain and his colleagues show that, in zebrafish, BMP mediates the L/R asymmetric activation of another EMT inducer, Prrx1a, in the lateral plate mesoderm with higher levels on the right. Prrx1a drives L/R differential cell movements towards the midline, leading to a leftward displacement of the cardiac posterior pole through an actomyosin-dependent mechanism. Downregulation of Prrx1a prevents heart looping and leads to mesocardia. Two parallel and mutually repressed pathways, respectively driven by Nodal and BMP on the left and right lateral plate mesoderm, converge on the asymmetric activation of the transcription factors Pitx2 and Prrx1, which integrate left and right information to govern heart morphogenesis. This mechanism is conserved in the chicken embryo, and in the mouse SNAIL1 acts in a similar manner to Prrx1a in zebrafish and PRRX1 in the chick. Thus, a differential L/R EMT produces asymmetric cell movements and forces, more prominent from the right, that drive heart laterality in vertebrates, the authors suggest.

Read more, please click http://www.nature.com/nature/journal/v549/n7670/full/nature23454.html

3. Palmitoylation-dependent activation of MC1R prevents melanomagenesis

The melanocortin-1 receptor (MC1R), a G-protein-coupled receptor, has a crucial role in human and mouse pigmentation. Activation of MC1R in melanocytes by α-melanocyte-stimulating hormone (α-MSH)stimulates cAMP signalling and melanin production and enhances DNA repair after ultraviolet irradiation. Individuals carrying MC1R variants, especially those associated with red hair colour, fair skin and poor tanning ability (denoted as RHC variants), are associated with higher risk of melanoma. However, how MC1R activity is modulated by ultraviolet irradiation, why individuals with red hair are more prone to developing melanoma, and whether the activity of RHC variants might be restored for therapeutic benefit are unknown. Here Shuyang Chen at Boston University School of Medicine in Massachusetts, USA and his colleagues demonstrate a potential MC1R-targeted intervention strategy in mice to rescue loss-of-function MC1R in MC1R RHC variants for therapeutic benefit by activating MC1R protein palmitoylation. MC1R palmitoylation, primarily mediated by the protein-acyl transferase ZDHHC, is essential for activating MC1R signalling, which triggers increased pigmentation, ultraviolet-B-induced G1-like cell cycle arrest and control of senescence and melanomagenesis in vitro and in vivo. Using C57BL/6J-Mc1re/eJ mice, in which endogenous MC1R is prematurely terminated, expressing Mc1r RHC variants, they show that pharmacological activation of palmitoylation rescues the defects of Mc1r RHC variants and prevents melanomagenesis. The results highlight a central role for MC1R palmitoylation in pigmentation and protection against melanoma.

Read more, please click http://www.nature.com/nature/journal/vaop/ncurrent/full/nature23887.html

4. The neuropeptide neuromedin U stimulates innate lymphoid cells and type 2 inflammation

The type 2 cytokines interleukin (IL)-4, IL-5, IL-9 and IL-13 have important roles in stimulating innate and adaptive immune responses that are required for resistance to helminth infection, promotion of allergic inflammation, metabolic homeostasis and tissue repair. Group 2 innate lymphoid cells (ILC2s) produce type 2 cytokines, and although advances have been made in understanding the cytokine milieu that promotes ILC2 responses, how ILC2 responses are regulated by other stimuli remains poorly understood. Here Christoph S. N. Klose at Cornell University in New York , USA and his colleagues demonstrate that ILC2s in the mouse gastrointestinal tract co-localize with cholinergic neurons that express the neuropeptide neuromedin U (NMU). In contrast to other haematopoietic cells, ILC2s selectively express the NMU receptor 1 (NMUR1). In vitro stimulation of ILC2s with NMU induced rapid cell activation, proliferation, and secretion of the type 2 cytokines IL-5, IL-9 and IL-13 that was dependent on cell-intrinsic expression of NMUR1 and Gαq protein. In vivo administration of NMU triggered potent type 2 cytokine responses characterized by ILC2 activation, proliferation and eosinophil recruitment that was associated with accelerated expulsion of the gastrointestinal nematode Nippostrongylus brasiliensis or induction of lung inflammation. Conversely, worm burden was higher in Nmur1−/− mice than in control mice. Furthermore, use of gene-deficient mice and adoptive cell transfer experiments revealed that ILC2s were necessary and sufficient to mount NMU-elicited type 2 cytokine responses. Together, these data indicate that the NMU–NMUR1 neuronal signalling circuit provides a selective mechanism through which the enteric nervous system and innate immune system integrate to promote rapid type 2 cytokine responses that can induce anti-microbial, inflammatory and tissue-protective type 2 responses at mucosal sites.

Read more, please click http://www.nature.com/nature/journal/vaop/ncurrent/full/nature23676.html

5. Structural basis of MsbA-mediated lipopolysaccharide transport

Lipopolysaccharide (LPS) in the outer membrane of Gram-negative bacteria is critical for the assembly of their cell envelopes. LPS synthesized in the cytoplasmic leaflet of the inner membrane is flipped to the periplasmic leaflet by MsbA, an ATP-binding cassette transporter. Despite substantial efforts, the structural mechanisms underlying MsbA-driven LPS flipping remain elusive. Here Wei Mi at Harvard Medical School in Massachusetts, USA and his colleagues use single-particle cryo-electron microscopy to elucidate the structures of lipid-nanodisc-embedded MsbA in three functional states. The 4.2 Å-resolution structure of the transmembrane domains of nucleotide-free MsbA reveals that LPS binds deep inside MsbA at the height of the periplasmic leaflet, establishing extensive hydrophilic and hydrophobic interactions with MsbA. Two sub-nanometre-resolution structures of MsbA with ADP-vanadate and ADP reveal an unprecedented closed and an inward-facing conformation, respectively. Their study uncovers the structural basis for LPS recognition, delineates the conformational transitions of MsbA to flip LPS, and paves the way for structural characterization of other lipid flippases.

Read more, please click http://www.nature.com/nature/journal/vaop/ncurrent/full/nature23649.html