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Methionine Sulfoxide Reductase B3 Recombinant Protein | MSRB3 recombinant protein

Recombinant Human Methionine Sulfoxide Reductase B3

Gene Names
MSRB3; DFNB74
Purity
Greater than 90.0% as determined by SDS-PAGE.
Synonyms
Methionine Sulfoxide Reductase B3; Recombinant Human Methionine Sulfoxide Reductase B3; MSRB3 Human; Methionine Sulfoxide Reductase B3 Human Recombinant; Methionine-R-sulfoxide reductase B3; MSRB3; DFNB74; FLJ36866; DKFZp686C1178; MSRB3 recombinant protein
Ordering
For Research Use Only!
Host
E Coli
Purity/Purification
Greater than 90.0% as determined by SDS-PAGE.
Form/Format
The MSRB3 solution (1 mg/ml) contains 20mM Tris-HCl buffer (pH 8.0), 1mM DTT, 10% glycerol and 0.1mM PMSF.
Sterile Filtered colorless solution.
Sequence
MCGLPSGSCR DKKNCKVVFS QQELRKRLTP LQYHVTQEKG TESAFEGEYT HHKDPGIYKC VVCGTPLFKS ETKFDSGSGW PSFHDVINSE AITFTDDFSY GMHRVETSCS QCGAHLGHIF DDGPRPTGKR YCINSAALSF TPADSSGTAE GGSGVASPAQ ADKAELLEHH HHHH.
Sequence Length
185
Related Product Information for MSRB3 recombinant protein
Description: MSRB3 Human Recombinant fused with an 8 amino acid His tag at C-terminus produced in E Coli is a single, non-glycosylated, polypeptide chain containing 174 amino acids (21-185 a.a.) and having a molecular mass of 19kDa. The MSRB3 is purified by proprietary chromatographic techniques.

Introduction: Methionine sulfoxide reductase B3 (MSRB3) is a member of the methionine sulfoxide reductases (MSR) family proteins. MSRB3 catalyzes the reduction of methionine sulfoxide to methionine. The MSRB3 enzyme acts as a monomer and requires zinc as a cofactor. MSRs are thought to defend against reactive oxygen species-induced oxidative damage in various organs, including the most environmentally exposed organ, the human skin. MSRB3 has a vital role in cold tolerance by eliminating MetO and ROS which accumulate at the ER during cold acclimation.
Product Categories/Family for MSRB3 recombinant protein

NCBI and Uniprot Product Information

NCBI GI #
NCBI GeneID
NCBI Accession #
NCBI GenBank Nucleotide #
UniProt Accession #
Molecular Weight
20,010 Da
NCBI Official Full Name
methionine-R-sulfoxide reductase B3 isoform 2
NCBI Official Synonym Full Names
methionine sulfoxide reductase B3
NCBI Official Symbol
MSRB3
NCBI Official Synonym Symbols
DFNB74
NCBI Protein Information
methionine-R-sulfoxide reductase B3; methionine-R-sulfoxide reductase B3, mitochondrial
UniProt Protein Name
Methionine-R-sulfoxide reductase B3
UniProt Gene Name
MSRB3
UniProt Synonym Gene Names
MsrB3
UniProt Entry Name
MSRB3_HUMAN

NCBI Description

The protein encoded by this gene catalyzes the reduction of methionine sulfoxide to methionine. This enzyme acts as a monomer and requires zinc as a cofactor. Several transcript variants encoding two different isoforms have been found for this gene. One of the isoforms localizes to mitochondria while the other localizes to endoplasmic reticula. [provided by RefSeq, Jul 2010]

Uniprot Description

MSRB3: Catalyzes the reduction of free and protein-bound methionine sulfoxide to methionine. Isoform 2 is essential for hearing. Defects in MSRB3 are the cause of deafness autosomal recessive type 74 (DFNB74). A form of non-syndromic sensorineural deafness characterized by prelingual, bilateral, profound hearing loss. Sensorineural deafness results from damage to the neural receptors of the inner ear, the nerve pathways to the brain, or the area of the brain that receives sound information. A nonsense mutation affecting exclusively mitochondrial isoform 2 is sufficient to produce hearing loss. Belongs to the MsrB Met sulfoxide reductase family. 2 isoforms of the human protein are produced by alternative splicing.

Protein type: Mitochondrial; EC 1.8.4.-; Oxidoreductase; Secreted; Secreted, signal peptide

Chromosomal Location of Human Ortholog: 12q14.3

Cellular Component: mitochondrion; endoplasmic reticulum

Molecular Function: zinc ion binding; peptide-methionine (R)-S-oxide reductase activity

Biological Process: protein repair; response to oxidative stress

Disease: Deafness, Autosomal Recessive 74

Research Articles on MSRB3

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Product Notes

The MSRB3 msrb3 (Catalog #AAA145382) is a Recombinant Protein produced from E Coli and is intended for research purposes only. The product is available for immediate purchase. The amino acid sequence is listed below: MCGLPSGSCR DKKNCKVVFS QQELRKRLTP LQYHVTQEKG TESAFEGEYT HHKDPGIYKC VVCGTPLFKS ETKFDSGSGW PSFHDVINSE AITFTDDFSY GMHRVETSCS QCGAHLGHIF DDGPRPTGKR YCINSAALSF TPADSSGTAE GGSGVASPAQ ADKAELL EHH HHHH.. It is sometimes possible for the material contained within the vial of "Methionine Sulfoxide Reductase B3, Recombinant Protein" to become dispersed throughout the inside of the vial, particularly around the seal of said vial, during shipment and storage. We always suggest centrifuging these vials to consolidate all of the liquid away from the lid and to the bottom of the vial prior to opening. Please be advised that certain products may require dry ice for shipping and that, if this is the case, an additional dry ice fee may also be required.

Precautions

All products in the AAA Biotech catalog are strictly for research-use only, and are absolutely not suitable for use in any sort of medical, therapeutic, prophylactic, in-vivo, or diagnostic capacity. By purchasing a product from AAA Biotech, you are explicitly certifying that said products will be properly tested and used in line with industry standard. AAA Biotech and its authorized distribution partners reserve the right to refuse to fulfill any order if we have any indication that a purchaser may be intending to use a product outside of our accepted criteria.

Disclaimer

Though we do strive to guarantee the information represented in this datasheet, AAA Biotech cannot be held responsible for any oversights or imprecisions. AAA Biotech reserves the right to adjust any aspect of this datasheet at any time and without notice. It is the responsibility of the customer to inform AAA Biotech of any product performance issues observed or experienced within 30 days of receipt of said product. To see additional details on this or any of our other policies, please see our Terms & Conditions page.

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