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・ Phenylalanine—tRNA ligase
・ Phenylaminotetralin
・ Phenylarsine oxide
・ Phenylarsonic acid
・ Phenylbenzimidazole sulfonic acid
・ Phenylbiguanide
・ Phenylboronic acid
・ Phenylbutazone
・ Phenyldichloroarsine
・ Phenyldichloroarsine (data page)
・ Phenylene
・ Phenylenediamine
・ Phenylephrine
・ Phenylethanoid
・ Phenylethanolamine
Phenylethanolamine N-methyltransferase
・ Phenylethylidenehydrazine
・ Phenylethylmalonamide
・ Phenylethylpyrrolidine
・ Phenylglyoxal
・ Phenylglyoxylate dehydrogenase (acylating)
・ Phenylglyoxylic acid
・ Phenylhydrazine
・ Phenylhydroxylamine
・ Phenylisobutylamine
・ Phenylisocyanate
・ Phenylketonuria
・ Phenyllithium
・ Phenylmagnesium bromide
・ Phenylmercuric borate


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

Phenylethanolamine N-methyltransferase (PNMT) is an enzyme found in the adrenal medulla that converts norepinephrine (noradrenaline) to epinephrine (adrenaline).
==Structure==

PNMT is a protein whose encoding gene is found on chromosome 17 in humans. It consists of 4 exons and is a 30kDa protein. It shares many properties found among the other methyltransferases. It is closest in sequence to glycine-N-methyl transferase (GNMT). It also shares many structural properties like the shape of the folding lip with catechol-O-methyl transferase (COMT), though it shares less sequence identity. Several features of the structure like this folding lip suggest that PNMT is a recent adaptation to the catecholamine synthesizing enzyme family, evolving later than COMT, but before other methyltransferases like GNMT.
S-adenosyl-L-methionine (SAM) is a required cofactor. The active site binding region for the cofactor SAM contains a rich number of pi bonds from phenylalanine and tyrosine residues in the active site help to keep it in its binding pocket through pi stacking. Among all known PNMT variants in nature there are 7 crucial aromatic residues conserved in the active site.〔
The residue Glutamine 185 is necessary in binding the catecholamine substrate. The replacement of this residue another reduces the catalytic efficiency of PNMT by tenfold up to three hundredfold.
In the absence of an inhibitor or ligand, a phosphate group is bound to the active site to stabilize this region.
Human PNMT forms dimers in solution. When PNMT crystals are grown in non-reducing solutions, two disulfide bonds form between cysteines 48 and 139 on opposite chains. This dimerization has no effect on the catalytic activity of the enzyme.

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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