"TRIM63" Related Products

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Recombinant Human TRIM63

Cat.No.: TRIM63-139H
Product Overview: Recombinant human TRIM63 (amino acid residues 1-353) was expressed in E.coli.
Description: The enzymes of the ubiquitylation pathway play a pivotal role in a number of cellular processes including the regulated and targeted proteasome-dependent degradation of substrate proteins. Three classes of enzymes are involved in the process of ubiquitylation; activating enzymes (E1s), conjugating enzymes (E2s) and protein ligases (E3s). Muscle Ring Finger protein 1 (MuRF1) is a member of the E3 protein ligase family and cloning of the human gene was first described by Dai and Liew et al. (2001).
Source: E. coli
Species: Human
Form: 50mM sodium Bicarbonate pH10, 250mM NaCl, 0.03% Brij35, 0.5mMTCEP
Molecular Mass: ~40.2kDa
Purity: >50% by InstantBlue™ SDS-PAGE
Storage: 12 months at -70°C. Avoid multiple freeze/thaw cycles.
Concentration: 0.25mg/ml
Gene Name: TRIM63 tripartite motif containing 63, E3 ubiquitin protein ligase [ Homo sapiens ]
Official Symbol: TRIM63
Synonyms: TRIM63; tripartite motif containing 63, E3 ubiquitin protein ligase; ring finger protein 28 , RNF28, tripartite motif containing 63 , tripartite motif containing 63; E3 ubiquitin-protein ligase TRIM63; IRF; iris ring finger protein; MURF 1; muscle specific RING finger protein 1; SMRZ; striated muscle RING zinc finger protein; ring finger protein 28; tripartite motif-containing 63; muscle specific ring finger protein 2; muscle-specific RING finger protein 1; tripartite motif-containing protein 63; MURF1; MURF2; RNF28; FLJ32380;
Gene ID: 84676
mRNA Refseq: NM_032588
Protein Refseq: NP_115977
MIM: 606131
UniProt ID: Q969Q1
Chromosome Location: 1p34-p33
Pathway: Adaptive Immune System, organism-specific biosystem; Antigen processing: Ubiquitination and Proteasome degradation, organism-specific biosystem; Class I MHC mediated antigen processing & presentation, organism-specific biosystem; Immune System, organism-specific biosystem;
Function: ligase activity; metal ion binding; signal transducer activity; titin binding; ubiquitin-protein ligase activity; zinc ion binding;

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