STT3A Monoclonal antibody proteintech 66581-1-Ig

$449.00
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66581-1-Ig

 

ITM1, Integral membrane protein 1, EC:2.4.99.18, Dolichyl-diphosphooligosaccharide--protein glycosyltransferase subunit STT3A, B5

Host / Isotype: Mouse / IgG1 Class: Monoclonal
Reactivity: human, mouse, rat Immunogen: CatNo: Ag27072 Product name: Recombinant human STT3A protein Source: e coli.-derived, PET28a Tag: 6*His Domain: 475-705 aa of BC020965 Sequence: STWVTSEAYSSPSIVLSARGGDGSRIIFDDFREAYYWLRHNTPEDAKVMSWWDYGYQITAMANRTILVDNNTWNNTHISRVGQAMASTEEKAYEIMRELDVSYVLVIFGGLTGYSSDDINKFLWMVRIGGSTDTGKHIKENDYYTPTGEFRVDREGSPVLLNCLMYKMCYYRFGQVYTEAKRPPGFDRVRNAEIGNKDFELDVLEEAYTTEHWLVRIYKVKDLDNRGLSRT Predict reactive species
 Applications: WB, IHC, IF, ELISA Observed Molecular Weight: 705 aa, 81 kDa
Formulation: PBS, Azide, Glycerol GenBank Accession Number: BC020965
Conjugate: Unconjugated Gene Symbol: STT3A
Tested Applications: Positive WB detected in Gene ID (NCBI): 3703
Application: Western Blot (WB) RRID: AB_2881941
Dilution: WB : 1:1000-1:6000 Conjugate: Unconjugated
Tested Reactivity: Human, Mouse, Rat Form: Liquid
Host / Isotype: Mouse / IgG1 Background Information: STT3A, also named as Integral membrane protein 1, belongs to the STT3 family. STT3A is expressed at high levels in placenta, liver, muscle and pancreas, and at very low levels in brain, lung and kidney. STT3A is a catalytic subunit of the N-oligosaccharyl transferase (OST) complex which catalyzes the transfer of a high mannose oligosaccharide from a lipid-linked oligosaccharide donor to an asparagine residue within an Asn-X-Ser/Thr consensus motif in nascent polypeptide chains. STT3A is present in the majority of OST complexes and mediates cotranslational N-glycosylation of most sites on target proteins, while STT3B-containing complexes are required for efficient post-translational glycosylation and mediate glycosylation of sites that have been skipped by STT3A. There are two isoforms of STT3A with molecular weight of 81 and 70 kDa. 66581-1-Ig antibody detects a protein around 65-70 kDa in SDS-PAGE which is similar to papers published. (PMID: 32005703, 25135935)

 

 

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