N-terminal GST- and C-terminal 6xHis tagged hemagglutinin immunodominant regions 1-30, 115-150 and 379-410 amino acids (GenBank Accession No. ADI44324).
Nature
Recombinant
Tag/Conjugate
His, GST
Purity
> 95%, based on SDS PAGE
Format
Each vial contains 100 μg of lyophilized protein in 50mM Tris-HCl, pH 8.0, 60mM NaCl, 10mM glutathione and 50% glycerol.
Preservative
None
Storage
2-8°C short term, -20°C long term
Introduction
Measles, also known as rubeola, caused by a virus, specifically a paramyxovirus of the genus Morbillivirus. To date, 21 strains of the measles virus have been identified. Measles virus (MV) is an enveloped, nonsegmented negative-stranded RNA virus of the Paramyxoviridae family.
Keywords
Measles Virus; Measles Virus antigen; Paramyxovirus; Morbillivirus; Hemagglutinin; HA
Citations
Publication ()
Have you cited DAG2298 in a publication? Let us know and earn a reward for your research.
Background
Measles virus (MV or MeV) is an enveloped RNA virus that belongs to the genus Morbillivirus in the Paramyxoviridae family. Measles, the infection caused by the measles virus, primarily affects the respiratory system. Its symptoms include fever, cough, runny nose, red eyes, and a characteristic rash consisting of maculopapular, erythematous lesions. This highly contagious virus spreads through respiratory droplets released during coughing and sneezing. It can be transmitted through close personal contact or direct contact with infected secretions. Measles is a global health concern, with over 20 million cases reported annually, particularly in developing regions of Asia and Africa. Despite the serological monotypic nature of the MeV, it has been classified into eight clades labeled A to H. These clades further comprise 23 subtypes. Different geographical areas often exhibit distinct major genotypes of the virus. The Recombinant MeV Hemagglutinin Mosaic is a bioengineered protein that combines different regions or epitopes of the hemagglutinin (H) protein from various strains of MeV. The H protein of MeV plays a vital role in the initial stages of viral infection. It facilitates attachment to host cells by binding to specific receptors on the cell surface, allowing the virus to enter and initiate the infection process. The H protein is also involved in viral fusion with the host cell membrane, leading to the release of the viral genome into the host cell. The MeV Hemagglutinin Mosaic is designed to mimic the H protein of MeV by incorporating epitopes or fragments from different strains of the virus. This measles mosaic protein can be used as an antigen in ELISA and Western Blots. Immunoreactive with sera of MeV-infected individuals.
Alternative Names
Recombinant MeV Hemagglutinin Mosaic Recombinant MeV HA Mosaic MeV Hemagglutinin Mosaic MeV HA Mosaic Measles Virus Hemagglutinin Mosaic Measles Virus HA Mosaic
Q: Would it be possible to share the antigen sequences, and also which clade your measles Hemagglutinin are?
A: It's N-terminal GST- and C-terminal 6xHis tagged hemagglutinin immunodominant regions 1-30, 115-150 and 379-410 amino acids (GenBank Accession No. ADI44324).
Customer Reviews
My Review for Recombinant MeV Hemagglutinin Mosaic (a.a. 1-30, 115-150, 379-410)
Creative Diagnostics products are for RESEARCH USE ONLY, please make sure your review is research based.
Required fields are marked with *
Terms and conditions:
We will select high-quality review customers and offer a $30 coupon for your next purchase.
All product reviews must be submitted in the English language.
Creative Diagnostics will not share any personal information of applicants, and all information will be treated with strict confidentiality and will not be sold or disclosed to a third party.
References
Measles Virus Hemagglutinin Protein Epitopes: The Basis of Antigenic Stability
The hemagglutinin (H) protein of measles virus (MeV) interacts with a cellular receptor which constitutes the initial stage of infection. Binding of H to this host cell receptor subsequently triggers the F protein to activate fusion between virus and host plasma membranes. The search for MeV receptors began with vaccine/laboratory virus strains and evolved to more relevant receptors used by wild-type MeV. Vaccine or laboratory strains of measles virus have been adapted to grow in common cell lines such as Vero and HeLa cells, and were found to use membrane cofactor protein (CD46) as a receptor. CD46 is a regulator that normally prevents cells from complement-mediated self-destruction, and is found on the surface of all human cells, with the exception of erythrocytes. Mutations in the H protein, which occur during adaptation and allow the virus to use CD46 as a receptor, have been identified. Wild-type isolates of measles virus cannot use the CD46 receptor. However, both vaccine/laboratory and wild-type strains can use an immune cell receptor called signaling lymphocyte activation molecule family member 1 (SLAMF1; also called CD150) and a recently discovered epithelial receptor known as Nectin-4. SLAMF1 is found on activated B, T, dendritic, and monocyte cells, and is the initial target for infections by measles virus. Nectin-4 is an adherens junction protein found at the basal surfaces of many polarized epithelial cells, including those of the airways. It is also over-expressed on the apical and basal surfaces of many adenocarcinomas, and is a cancer marker for metastasis and tumor survival. Nectin-4 is a secondary exit receptor which allows measles virus to replicate and amplify in the airways, where the virus is expelled from the body in aerosol droplets. The amino acid residues of H protein that are involved in binding to each of the receptors have been identified through X-ray crystallography and site-specific mutagenesis. Recombinant measles "blind" to each of these receptors have been constructed, allowing the virus to selectively infect receptor specific cell lines. Finally, the observations that SLAMF1 is found on lymphomas and that Nectin-4 is expressed on the cell surfaces of many adenocarcinomas highlight the potential of measles virus for oncolytic therapy. Although CD46 is also upregulated on many tumors, it is less useful as a target for cancer therapy, since normal human cells express this protein on their surfaces.
Measles virus, a member of the genus Morbillivirus, is highly contagious and still shows considerable mortality with over 100 000 deaths annually, although efficient attenuated vaccines exist. Recent studies of measles virus haemagglutinin (MeV-H) and its receptor, including crystallographic and electron microscopic structural analyses combined with functional assays, have revealed how the MeV-H protein recognizes its cognate receptors, SLAM and Nectin-4, and how the glycan shield ensures effective vaccination. In addition, the crystal structure of the MeV-F protein indicated its similarity to those of other paramyxoviruses. Taking into account these data, several models of viral entry/membrane fusion of measles viruses and related paramyxoviruses have been proposed. Furthermore, anti-MeV-F inhibitors targeted to specific regions to inhibit MeV-F protein activation were reported, with potency for preventing MeV infection. The inhibitors targeted for entry events may potentially be applied to treatment of MeV-derived diseases, although escape mutations and drug profiles should be considered.