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Recombinant JEV Peptide pr Protein, N-GST & C-His

Catalog #:   YVV43402 Specific References (46) DATASHEET
Applications: ELISA, Immunogen, SDS-PAGE, WB, Bioactivity testing in progress
Expression system: E. coli
Accession: P0DOK8
Protein length: Met128-Arg219
Overview

Catalog No.

YVV43402

Expression system

E. coli

Species

Japanese encephalitis virus (strain M28) (JEV)

Protein length

Met128-Arg219

Predicted molecular weight

38.84 kDa

Nature

Recombinant

Endotoxin level

Please contact with the lab for this information.

Purity

>90% as determined by SDS-PAGE.

Accession

P0DOK8

Applications

ELISA, Immunogen, SDS-PAGE, WB, Bioactivity testing in progress

Form

Lyophilized

Storage buffer

Lyophilized from a solution in PBS pH 7.4, 0.02% NLS, 1mM EDTA, 4% Trehalose, 1% Mannitol.

Reconstitution

Reconstitute in sterile water for a stock solution. A copy of datasheet will be provided with the products, please refer to it for details.

Shipping

In general, proteins are provided as lyophilized powder/frozen liquid. They are shipped out with dry ice/blue ice unless customers require otherwise.

Stability and Storage

Use a manual defrost freezer and avoid repeated freeze thaw cycles. Store at 2 to 8°C for one week. Store at -20 to -80°C for twelve months from the date of receipt.

Alternative Names

Structural polyprotein, Peptide pr

Data Image
References

Nanobody Engineered and Photosensitiser Loaded Bacterial Outer Membrane Vesicles Potentiate Antitumour Immunity and Immunotherapy., PMID:40240911

Monocyte-derived extracellular vesicles, stimulated by Trypanosoma cruzi, enhance cellular invasion in vitro via activated TGF-β1., PMID:39611395

RAB22A sorts epithelial growth factor receptor (EGFR) from early endosomes to recycling endosomes for microvesicles release., PMID:39051763

Extracellular vesicle surface display of αPD-L1 and αCD3 antibodies via engineered late domain-based scaffold to activate T-cell anti-tumor immunity., PMID:39051742

Lipid A in outer membrane vesicles shields bacteria from polymyxins., PMID:38766978

Japanese encephalitis virus NS1 and NS1' protein disrupts the blood-brain barrier through macrophage migration inhibitory factor-mediated autophagy., PMID:38591880

Stromal cell-derived small extracellular vesicles enhance radioresistance of prostate cancer cells via interleukin-8-induced autophagy., PMID:37387557

Swine IFI6 confers antiviral effects against Japanese encephalitis virus in vitro and in vivo., PMID:37097881

Biosynthetic neoantigen displayed on bacteria derived vesicles elicit systemic antitumour immunity., PMID:36468941

Extracellular vesicles from colorectal cancer cells promote metastasis via the NOD1 signalling pathway., PMID:36068649

Interferon-γ primes macrophages for pathogen ligand-induced killing via a caspase-8 and mitochondrial cell death pathway., PMID:35139355

Retinoic Acid-Inducible Gene I-Like Receptors Activate Snail To Limit RNA Viral Infections., PMID:34379517

Myocardial ischemia-reperfusion induced cardiac extracellular vesicles harbour proinflammatory features and aggravate heart injury., PMID:33664937

Mosquito defensin facilitates Japanese encephalitis virus infection by downregulating the C6/36 cell-surface antiviral protein HSC70B., PMID:33385886

p53 promotes ZDHHC1-mediated IFITM3 palmitoylation to inhibit Japanese encephalitis virus replication., PMID:33108395

CRISPR screening of porcine sgRNA library identifies host factors associated with Japanese encephalitis virus replication., PMID:33057066

NS5-V372A and NS5-H386Y variations are responsible for differences in interferon α/β induction and co-contribute to the replication advantage of Japanese encephalitis virus genotype I over genotype III in ducklings., PMID:32881988

Peptide inhibitors of tembusu virus infection derived from the envelope protein., PMID:32456819

Artemisinin inhibits the replication of flaviviruses by promoting the type I interferon production., PMID:32360948

Duck karyopherin α4 (duKPNA4) is involved in type I interferon expression and the antiviral response against Japanese encephalitis virus., PMID:31697956

Chemokine receptor antagonist block inflammation and therapy Japanese encephalitis virus infection in mouse model., PMID:29704821

Brain microvascular endothelial-astrocyte cell responses following Japanese encephalitis virus infection in an in vitro human blood-brain barrier model., PMID:29635016

Integrin αvβ3 promotes infection by Japanese encephalitis virus., PMID:28043010

Substitution of the precursor peptide prevents anti-prM antibody-mediated antibody-dependent enhancement of dengue virus infection., PMID:27939945

Replacement of pr gene with Japanese encephalitis virus pr using reverse genetics reduces antibody-dependent enhancement of dengue virus 2 infection., PMID:26219500

Glycoprotein E of the Japanese encephalitis virus forms virus-like particles and induces syncytia when expressed by a baculovirus., PMID:25593161

Etanercept reduces neuroinflammation and lethality in mouse model of Japanese encephalitis., PMID:24652493

Comprehensive mapping of a novel NS1 epitope conserved in flaviviruses within the Japanese encephalitis virus serocomplex., PMID:24631788

Fine mapping of a linear epitope on EDIII of Japanese encephalitis virus using a novel neutralizing monoclonal antibody., PMID:24184444

Porcine alpha interferon inhibit Japanese encephalitis virus replication by different ISGs in vitro., PMID:24012350

Antibodies generated by immunization with the NS1 protein of West Nile virus confer partial protection against lethal Japanese encephalitis virus challenge., PMID:23834965

Efficient production of Japanese encephalitis virus-like particles by recombinant lepidopteran insect cells., PMID:22948954

Production of Japanese encephalitis virus-like particles using the baculovirus-insect cell system., PMID:22841798

A monoclonal antibody against PrM/M protein of Japanese encephalitis virus., PMID:22008072

Comprehensive mapping of West Nile virus (WNV)- and Japanese encephalitis virus serocomplex-specific linear B-cell epitopes from WNV non-structural protein 1., PMID:21940411

Identification of two linear B-cell epitopes from West Nile virus NS1 by screening a phage-displayed random peptide library., PMID:21729328

Identification of a conserved JEV serocomplex B-cell epitope by screening a phage-display peptide library with a mAb generated against West Nile virus capsid protein., PMID:21375771

Japanese encephalitis Virus wild strain infection suppresses dendritic cells maturation and function, and causes the expansion of regulatory T cells., PMID:21269456

Infection of mouse bone marrow-derived dendritic cells by live attenuated Japanese encephalitis virus induces cells maturation and triggers T cells activation., PMID:21093495

Identification and characterization of a virus-specific continuous B-cell epitope on the PrM/M protein of Japanese Encephalitis Virus: potential application in the detection of antibodies to distinguish Japanese Encephalitis Virus infection from West Nile Virus and Dengue Virus infections., PMID:20858291

Co-expression of Japanese encephalitis virus prM-E-NS1 antigen with granulocyte-macrophage colony-stimulating factor enhances humoral and anti-virus immunity after DNA vaccination., PMID:20064558

Evaluation of murine bone marrow-derived dendritic cells loaded with inactivated virus as a vaccine against Japanese encephalitis virus., PMID:19665607

Immune responses of recombinant adenoviruses expressing immunodominant epitopes against Japanese encephalitis virus., PMID:18786591

Bursin as an adjuvant is a potent enhancer of immune response in mice immunized with the JEV subunit vaccine., PMID:18191231

An hsp70 fusion protein vaccine potentiates the immune response against Japanese encephalitis virus., PMID:16862385

Neutralizing peptide ligands selected from phage-displayed libraries mimic the conformational epitope on domain III of the Japanese encephalitis virus envelope protein., PMID:11376846

Datasheet
$ 313
Product specifications
100 μg 313 1 mg 1629

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Recombinant JEV Peptide pr Protein, N-GST & C-His [YVV43402]
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