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DL-犬尿氨酸和5-氟甲基鸟氨酸。鸟氨酸转氨酶的两种失活剂的比较。

DL-canaline and 5-fluoromethylornithine. Comparison of two inactivators of ornithine aminotransferase.

作者信息

Bolkenius F N, Knödgen B, Seiler N

机构信息

Merrell Dow Research Institute, Strasbourg, France.

出版信息

Biochem J. 1990 Jun 1;268(2):409-14. doi: 10.1042/bj2680409.

DOI:10.1042/bj2680409
PMID:2363680
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1131447/
Abstract

5-Fluoromethylornithine (5FMOrn) is an enzyme-activated irreversible inhibitor or ornithine aminotransferase (L-ornithine:2-oxo-acid 5-aminotransferase, OAT). For purified rat liver OAT, Ki(app.) was found to be 30 microM. and tau 1/2 = 4 min. Of the four stereomers of 5FMOrn only one reacts with OAT. The formation of a chromophore with an absorption maximum at 458 nm after inactivation of OAT by 5FMOrn suggests the formation of an enamine intermediate, which is slowly hydrolysed to release an unsaturated ketone. L-Canaline [(S)-2-amino-4-amino-oxybutyric acid] is a well-known irreversible inhibitor of OAT. Not only the natural L-enantiomer but also the D-enantiomer reacts by oxime formation with pyridoxal 5'-phosphate in the active site of the enzyme, although considerably more slowly. This demonstrates that the stereochemistry at C-2 of ornithine is not absolutely stringent. In vitro, canaline reacted faster than 5FMOrn with OAT. In vivo, however, only incomplete OAT inhibition was observed with canaline. Whereas intraperitoneal administration of 10 mg of 5FMOrn/kg body wt. to mice was sufficient to inactivate OAT in brain and liver by 90% for 24 h, 500 mg of DL-canaline/kg body wt. only produced a transient inhibition of 65-70%. The accumulation of ornithine in these tissues was considerably slower and the maximum concentrations lower than were achieved with 5FMOrn. It appears that DL-canaline, in contrast with 5FMOrn, is not useful as a tool in studies of biological consequences of OAT inhibition.

摘要

5-氟甲基鸟氨酸(5FMOrn)是一种酶激活的不可逆鸟氨酸转氨酶抑制剂(L-鸟氨酸:2-氧代酸5-转氨酶,OAT)。对于纯化的大鼠肝脏OAT,发现其表观抑制常数(Ki(app.))为30微摩尔,半衰期(tau 1/2)为4分钟。5FMOrn的四种立体异构体中只有一种与OAT反应。5FMOrn使OAT失活后形成在458纳米处有最大吸收的发色团,这表明形成了烯胺中间体,该中间体缓慢水解以释放不饱和酮。L-刀豆氨酸[(S)-2-氨基-4-氨基氧基丁酸]是一种著名的OAT不可逆抑制剂。不仅天然的L-对映体,而且D-对映体都通过肟的形成与酶活性位点中的磷酸吡哆醛反应,尽管反应速度要慢得多。这表明鸟氨酸C-2位的立体化学并非绝对严格。在体外,刀豆氨酸与OAT的反应比5FMOrn快。然而,在体内,用刀豆氨酸仅观察到OAT的不完全抑制。给小鼠腹腔注射10毫克/千克体重的5FMOrn足以使脑和肝脏中的OAT在24小时内失活90%,而500毫克/千克体重的DL-刀豆氨酸仅产生65 - 70%的短暂抑制。这些组织中鸟氨酸的积累要慢得多,最大浓度也低于5FMOrn所达到的浓度。与5FMOrn相比,DL-刀豆氨酸似乎不能作为研究OAT抑制生物学后果的工具。

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