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・ Glycerophospholipid arachidonoyl-transferase (CoA-independent)
・ Glycerophthora
・ Glyceryl behenate
・ Glyceryl hydroxystearate
・ Glycia
・ Glycidic acid
・ Glycidol
・ Glycidyl methacrylate
・ Glycin
・ Glycine
・ Glycine (data page)
・ Glycine (plant)
・ Glycine betaine aldehyde
・ Glycine C-acetyltransferase
・ Glycine clandestina
Glycine cleavage system
・ Glycine dehydrogenase
・ Glycine dehydrogenase (cyanide-forming)
・ Glycine dehydrogenase (cytochrome)
・ Glycine dehydrogenase (decarboxylating)
・ Glycine encephalopathy
・ Glycine formimidoyltransferase
・ Glycine hydroxymethyltransferase
・ Glycine latrobeana
・ Glycine N-acyltransferase
・ Glycine N-benzoyltransferase
・ Glycine N-methyltransferase
・ Glycine N-phenylacetyltransferase
・ Glycine oxidase
・ Glycine propionyl-L-carnitine


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Glycine cleavage system : ウィキペディア英語版
Glycine cleavage system

The glycine cleavage system (GCS) is also known as the glycine decarboxylase complex or GDC. The system is a series of enzymes that are triggered in response to high concentrations of the amino acid glycine. The same set of enzymes is sometimes referred to as glycine synthase when it runs in the reverse direction to form glycine. The glycine cleavage system is composed of four proteins: the T-protein, P-protein, L-protein, and H-protein. They do not form a stable complex, so it is more appropriate to call it a "system" instead of a "complex". The H-protein is responsible for interacting with the three other proteins and acts as a shuttle for some of the intermediate products in glycine decarboxylation.〔 In both animals and plants the glycine cleavage system is loosely attached to the inner membrane of the mitochondria. Mutations in this enzymatic system are linked with glycine encephalopathy.〔
==Components==


抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
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