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・ N-Methyl-2-pyrrolidone
・ N-Methyl-3-piperidyl benzilate
・ N-Methyl-D-aspartic acid
・ N-methyl-L-amino-acid oxidase
・ N-Methyl-L-glutamic acid
・ N-Methyl-N-ethyltryptamine
・ N-Methyl-PPPA
・ N-methylalanine dehydrogenase
・ N-Methylaniline
・ N-Methylcarfentanil
・ N-methylcoclaurine 3'-monooxygenase
・ N-Methylconiine
・ N-Methylephedrine
・ N-Methylethanolamine
・ N-Methylformamide
N-Acetylmannosamine
・ N-Acetylmescaline
・ N-Acetylmuramic acid
・ N-acetylmuramic acid 6-phosphate etherase
・ N-acetylmuramoyl-L-alanine amidase
・ N-acetylneuraminate 4-O-acetyltransferase
・ N-acetylneuraminate 7-O(or 9-O)-acetyltransferase
・ N-acetylneuraminate epimerase
・ N-acetylneuraminate lyase
・ N-acetylneuraminate synthase
・ N-Acetylneuraminic acid
・ N-acetylneuraminylgalactosylglucosylceramide b-1,4-N-acetylgalactosaminyltransferase
・ N-acetylornithine carbamoyltransferase
・ N-acetylphosphatidylethanolamine-hydrolysing phospholipase D
・ N-Acetylprocainamide


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N-Acetylmannosamine : ウィキペディア英語版
N-Acetylmannosamine

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''N''-Acetylmannosamine is a hexosamine monosaccharide. It is a neutral, stable naturally occurring compound. N-Acetylmannosamine is also known as N-Acetyl-D-mannosamine monohydrate, (which has the CAS Registry Number: 676347-48-1), N-Acetyl-D-mannosamine which can be abbreviated to ManNAc or, less commonly, NAM).
ManNAc is the first committed biological precursor of N-acetylneuraminic acid (Neu5Ac, sialic acid) (Figure 1). Sialic acids are the negatively charged, terminal monosaccharides of carbohydrate chains that are attached to glycoproteins and glycolipids (glycans).
== Biological role of ManNAc ==
ManNAc is the first committed biological precursor of Neu5Ac.
The initiation of sialic acid biosynthesis occurs in the cytoplasm. The main substrate for this pathway is UDP-GlcNAc, which is derived from glucose. In the rate-limiting step of the pathway, UDP-GlcNAc is converted into ManNAc by UDP-GlcNAc 2-epimerase, encoded by the epimerase domain of GNE. ManNAc is phosphorylated by ManNAc kinase encoded by the kinase domain of GNE. Sialic acid becomes “activated” by CMP-sialic acid synthetase in the nucleus. CMP-sialic acid acts as a sialic acid donor to sialylate glycans on nascent glycoproteins and glycolipids in the Golgi apparatus; it also acts as a cytoplasmic feedback inhibitor of the UDP-GlcNAc 2-epimerase enzyme by binding to its allosteric site.
The UDP-GlcNAc 2-epimerase kinase is the rate limiting step in sialic acid biosynthesis. If the enzyme does not work efficiently the organism cannot function correctly.

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