Recombinant Human GLYAT/GAT protein (His tag N-Terminus)
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Recombinant Human GLYAT/GAT protein (His tag N-Terminus) is a Human Full Length protein, in the 1 to 296 aa range, expressed in Escherichia coli, with >90%, suitable for SDS-PAGE, Mass Spec.
대체 명칭 보기
ACGNAT, CAT, GAT, GLYAT, Glycine N-acyltransferase, Acyl-CoA:glycine N-acyltransferase, Aralkyl acyl-CoA N-acyltransferase, Aralkyl acyl-CoA:amino acid N-acyltransferase, Benzoyl-coenzyme A:glycine N-acyltransferase, Glycine N-benzoyltransferase, HRP-1(CLP), AAc
- SDS-PAGE
Unknown
SDS-PAGE - Recombinant Human GLYAT/GAT protein (His tag N-Terminus) (AB109928)
15% SDS-PAGE showing ab109928 at approximately 36.0 kDa (3µg).
- SDS-PAGE
Supplier Data
SDS-PAGE - Recombinant Human GLYAT/GAT protein (His tag N-Terminus) (AB109928)
3ug by SDS-PAGE under reducing condition and visualized by coomassie blue stain.
Reactivity 정보
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서열 정보
특성 및 보관 정보
제형
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추가 정보
This supplementary information is collated from multiple sources and compiled automatically.
Biological function summary
GLYAT functions as part of a detoxification pathway. By conjugating glycine to various acyl-CoA substrates it assists in the removal of xenobiotics and other acyl-containing toxins. This action is particularly important for the prevention of acidosis and maintenance of metabolic homeostasis. The enzyme does not typically form part of a larger complex but works alongside other enzymes involved in amino acid metabolism.
Pathways
GLYAT plays an essential role in the glycine conjugation pathway. This pathway is important for detoxifying benzoic acid and other aromatic carboxylic acids. Related proteins include various CoA synthetases which provide the acyl-CoA substrates needed for GLYAT activity. The glycine conjugation pathway intersects with central metabolic networks like amino acid metabolism linking GLYAT functionally to both catabolic and anabolic processes.
일반 정보
기능
Mitochondrial acyltransferase which transfers an acyl group to the N-terminus of glycine and glutamine, although much less efficiently. Can conjugate numerous substrates to form a variety of N-acylglycines, with a preference for benzoyl-CoA over phenylacetyl-CoA as acyl donors. Thereby detoxify xenobiotics, such as benzoic acid or salicylic acid, and endogenous organic acids, such as isovaleric acid.
서열 유사성
Belongs to the glycine N-acyltransferase family.
Subcellular localisation
Mitochondrion
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