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猪脑中一种与烟酰胺腺嘌呤二核苷酸磷酸(NADP)相关的前列腺素D脱氢酶。

An NADP-linked prostaglandin D dehydrogenase in swine brain.

作者信息

Watanabe K, Shimizu T, Iguchi S, Wakatsuka H, Hayashi M, Hayaishi O

出版信息

J Biol Chem. 1980 Mar 10;255(5):1779-82.

PMID:7354056
Abstract

An NADP-linked 15-hydroxyprostaglandin dehydrogenase specific for prostaglandin D2 was discovered and partially purified from cytosol of swine brain. Prostaglandins A2, B2, D3, E2, and F2 alpha were poor substrates for this enzyme, the rates of reaction being less than 10% of that with prostaglandin D2. The enzyme was separated by Sephadex column chromatography from the other NADP-linked 15-hydroxyprostaglandin dehydrogenase that was also present in brain and metabolized prostaglandins B2, E2, and F2 alpha much more effectively than D2. The primary reaction product was tentatively identified as 15-ketoprostaglandin D2 by its characteristic absorption spectrum with a peak at 415 nm at pH 9. This compound was further converted to 13,14-dihydro-15-ketoprostaglandin D2 in the presence of NADPH by the action of 15-ketoprostaglandin delta 13-reductase that was co-purified with the dehydrogenase. This dehydrogenase appears to be responsible for the specific inactivation of prostaglandin D2 which is the major prostaglandin in the central nervous system.

摘要

从猪脑细胞质中发现并部分纯化了一种对前列腺素D2具有特异性的NADP连接的15-羟基前列腺素脱氢酶。前列腺素A2、B2、D3、E2和F2α是该酶的较差底物,反应速率不到前列腺素D2的10%。通过Sephadex柱色谱法将该酶与脑内也存在的另一种NADP连接的15-羟基前列腺素脱氢酶分离,后者代谢前列腺素B2、E2和F2α比D2更有效。通过其在pH 9时415 nm处有峰值的特征吸收光谱,初步确定初级反应产物为15-酮基前列腺素D2。在NADPH存在下,通过与脱氢酶共纯化的15-酮基前列腺素δ13-还原酶的作用,该化合物进一步转化为13,14-二氢-15-酮基前列腺素D2。这种脱氢酶似乎负责前列腺素D2的特异性失活,前列腺素D2是中枢神经系统中的主要前列腺素。

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