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AB25888

Anti-West Nile Virus preM抗体

Anti-West Nile Virus preM antibody

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(3 Publications)

Rabbit Polyclonal POLG antibody. Suitable for ELISA and reacts with West Nile virus samples. Cited in 3 publications.

查看别名

Genome polyprotein

关键信息

宿主种属

Rabbit

克隆

Polyclonal

亚型

IgG

不含载体蛋白

No

反应种属

West Nile virus

应用

ELISA

applications

反应性数据

{ "title": "Reactivity Data", "filters": { "stats": ["", "Species", "Dilution Info", "Notes"], "tabs": { "all-applications": {"fullname" : "All Applications", "shortname": "All Applications"}, "ELISA" : {"fullname" : "ELISA", "shortname":"ELISA"} }, "product-promise": { "all": "all", "testedAndGuaranteed": "tested", "guaranteed": "expected", "predicted": "predicted", "notRecommended": "not-recommended" } }, "values": { "West Nile virus": { "ELISA-species-checked": "guaranteed", "ELISA-species-dilution-info": "", "ELISA-species-notes": "<p>This polyclonal antibody can be used for the detection of the WNV Matrix precursor protein in ELISA. It will detect 10 ng of free peptide at 1 µg/ml.</p>" } } }

性能和储存信息

形式
Liquid
纯化工艺
Affinity purification Immunogen
存储溶液
pH: 7.2 Preservative: 0.02% Sodium azide Constituents: PBS
运输条件
Blue Ice
推荐的短期储存条件
+4°C
推荐的长期储存条件
+4°C

补充信息

This supplementary information is collated from multiple sources and compiled automatically.

West Nile Virus preM also known as WNV preM is a small envelope glycoprotein that plays an important role in the virus's assembly and maturation. The preM protein weighs approximately 26 kilodaltons forming part of the structural assembly of the virus particle. Primarily expressed in virus-infected host cells the preM protein is initially produced as a precursor that undergoes post-translational modifications. These processes prepare it to protect the viral envelope protein E which is critical during the maturation of the virus as it exits host cells and becomes infectious.
Biological function summary

The preM protein ensures proper folding and transportation of the virus structural proteins assisting in the assembly and release of mature West Nile Virus particles. It forms a complex with E protein with preM stabilizing E and preventing premature fusion with host membranes during the virus's exit. The close interaction between preM and its complex partner E occurs primarily in the endoplasmic reticulum of the host cells and this interaction governs the virus's infectivity and immune evasion tactics.

Pathways

The preM protein intricately ties into the viral entry and budding pathways of West Nile Virus replication cycle. Within the budding pathway preM interacts closely with the E protein to tightly control the release of mature viral particles from the host cell. This function of preM is also implicitly connected with cellular trafficking pathways which are important for the delivery and localization of viral components. Therefore the structural interactions guided by preM support the efficient replication and propagation of the virus within the host.

The preM protein of West Nile Virus is directly connected to viral encephalitis and febrile illness common outcomes of human infection. The proteomic interplay between preM and E during virus maturation influences viral pathogenicity significantly impacting disease severity. The efficient formation of infectious viral particles mediated by preM also increases the virulence of West Nile Virus linking it intricately with the severity of symptoms observed in infections. Understanding these connections helps in developing therapeutic approaches targeting these viral proteins to manage or prevent disease progression.

产品实验方案

For this product, it's our understanding that no specific protocols are required. You can visit:

靶点信息

Capsid protein C. Plays a role in virus budding by binding to the cell membrane and gathering the viral RNA into a nucleocapsid that forms the core of a mature virus particle (By similarity). During virus entry, may induce genome penetration into the host cytoplasm after hemifusion induced by the surface proteins (By similarity). Can migrate to the cell nucleus where it modulates host functions (By similarity). Overcomes the anti-viral effects of host EXOC1 by sequestering and degrading the latter through the proteasome degradation pathway (PubMed : 23522008).. Capsid protein C. Inhibits RNA silencing by interfering with host Dicer.. Peptide pr. Prevents premature fusion activity of envelope proteins in trans-Golgi by binding to envelope protein E at pH6.0. After virion release in extracellular space, gets dissociated from E dimers.. Protein prM. Acts as a chaperone for envelope protein E during intracellular virion assembly by masking and inactivating envelope protein E fusion peptide. prM is the only viral peptide matured by host furin in the trans-Golgi network probably to avoid catastrophic activation of the viral fusion activity in acidic Golgi compartment prior to virion release. prM-E cleavage is inefficient, and many virions are only partially matured. These uncleaved prM would play a role in immune evasion.. Small envelope protein M. May play a role in virus budding. Exerts cytotoxic effects by activating a mitochondrial apoptotic pathway through M ectodomain. May display a viroporin activity.. Envelope protein E. Binds to host cell surface receptor and mediates fusion between viral and cellular membranes (PubMed : 15367621). Envelope protein is synthesized in the endoplasmic reticulum in the form of heterodimer with protein prM (By similarity). They play a role in virion budding in the ER, and the newly formed immature particle is covered with 60 spikes composed of heterodimer between precursor prM and envelope protein E (By similarity). The virion is transported to the Golgi apparatus where the low pH causes dissociation of PrM-E heterodimers and formation of E homodimers (By similarity). prM-E cleavage is inefficient, and many virions are only partially matured (By similarity). These uncleaved prM would play a role in immune evasion (By similarity).. Non-structural protein 1. Involved in immune evasion, pathogenesis and viral replication. Once cleaved off the polyprotein, is targeted to three destinations : the viral replication cycle, the plasma membrane and the extracellular compartment. Essential for viral replication. Required for formation of the replication complex and recruitment of other non-structural proteins to the ER-derived membrane structures. Excreted as a hexameric lipoparticle that plays a role against host immune response. Antagonizing the complement function. Binds to the host macrophages and dendritic cells. Inhibits signal transduction originating from Toll-like receptor 3 (TLR3).. Non-structural protein 2A. Component of the viral RNA replication complex that functions in virion assembly and antagonizes the host alpha/beta interferon antiviral response.. Serine protease subunit NS2B. Required cofactor for the serine protease function of NS3. May have membrane-destabilizing activity and form viroporins (By similarity).. Serine protease/Helicase NS3. Displays three enzymatic activities : serine protease, NTPase and RNA helicase. NS3 serine protease, in association with NS2B, performs its autocleavage and cleaves the polyprotein at dibasic sites in the cytoplasm : C-prM, NS2A-NS2B, NS2B-NS3, NS3-NS4A, NS4A-2K and NS4B-NS5. NS3 RNA helicase binds RNA and unwinds dsRNA in the 3' to 5' direction (By similarity). NS3 supports the separation of RNA daughter and template strands during viral replication. The helicase part is involved in the inhibition of phosphorylation of host STAT1, and thereby inhibition of host type-I IFN signaling (By similarity). In addition, NS3 assists the initiation of replication by unwinding the RNA secondary structure in the 3' non-translated region (NTR). Inhibits STAT2 translocation in the nucleus after IFN-alpha treatment (By similarity).. Non-structural protein 4A. Regulates the ATPase activity of the NS3 helicase activity. NS4A allows NS3 helicase to conserve energy during unwinding.. Peptide 2k. Functions as a signal peptide for NS4B and is required for the interferon antagonism activity of the latter.. Non-structural protein 4B. Induces the formation of ER-derived membrane vesicles where the viral replication takes place. Inhibits interferon (IFN)-induced host STAT1 phosphorylation and nuclear translocation, thereby preventing the establishment of cellular antiviral state by blocking the IFN-alpha/beta pathway. Inhibits STAT2 translocation in the nucleus after IFN-alpha treatment.. RNA-directed RNA polymerase NS5. Replicates the viral (+) and (-) RNA genome, and performs the capping of genomes in the cytoplasm (PubMed : 17267492). NS5 methylates viral RNA cap at guanine N-7 and ribose 2'-O positions (PubMed : 17267492). Besides its role in RNA genome replication, also prevents the establishment of cellular antiviral state by blocking the interferon-alpha/beta (IFN-alpha/beta) signaling pathway (By similarity). Inhibits host TYK2 and STAT2 phosphorylation, thereby preventing activation of JAK-STAT signaling pathway (By similarity).
See full target information POLG_WNV

文献 (3)

Recent publications for all applications. Explore the full list and refine your search

Clinical and vaccine immunology : CVI 19:1853-8 PubMed22993408

2012

Development of monoclonal antibodies to West Nile virus and their application in immunohistochemistry.

Applications

Unspecified application

Species

Unspecified reactive species

Jiro Hirota,Shinya Shimizu,Tomoyuki Shibahara,Takashi Isobe,Manabu Yamada,Nobuhiko Tanimura

The Journal of general virology 92:2281-2285 PubMed21697345

2011

prM-antibody renders immature West Nile virus infectious in vivo.

Applications

FuncS

Species

Unspecified reactive species

Tonya M Colpitts,Izabela Rodenhuis-Zybert,Bastiaan Moesker,Penghua Wang,Erol Fikrig,Jolanda M Smit

Clinical and vaccine immunology : CVI 14:1117-26 PubMed17634508

2007

Complex adenovirus-mediated expression of West Nile virus C, PreM, E, and NS1 proteins induces both humoral and cellular immune responses.

Applications

ICC/IF

Species

Unspecified reactive species

Jennifer Schepp-Berglind,Min Luo,Danher Wang,Jason A Wicker,Nicholas U Raja,Brian D Hoel,David H Holman,Alan D T Barrett,John Y Dong
View all publications

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