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PMID: 21770850 已发表 · ppublish 英语

Inhibition mechanism of carbapenem antibiotics on acylpeptide hydrolase, a key enzyme in the interaction with valproic acid.

Suzuki Eiko, Nakai Daisuke, Yamamura Naotoshi, Kobayashi Nobuhiro, Okazaki Osamu, Izumi Takashi

摘要

We have reported that inhibition of acylpeptide hydrolase (APEH), identified as valproic acid glucuronide hydrolase in human liver cytosol, by carbapenem antibiotics could lead to a decrease of plasma levels of valproic acid. In this study, we examined the inhibition mechanism using human liver cytosol and purified porcine APEH with a similar property to human counterpart. After preincubation of human liver cytosol with panipenem or meropenem for 30 min, the inhibition of APEH activity was 20-fold stronger than that without preincubation. Porcine APEH activity inhibited by meropenem did not recover after dialysis. Meropenem bound to porcine APEH and the binding was blocked by a serine hydrolase inhibitor, diisopropyl fluorophosphate. Open β-lactam ring form of meropenem did not affect APEH activity in human liver cytosol. Likewise, other antibiotics, which have a different heterocycle adjacent to the β-lactam ring with an opposite configuration of the side chain from carbapenems, did not inhibit APEH activity. In conclusion, carbapenems inhibit APEH in both reversible and true irreversible manner and the irreversible inhibition is partially explained by binding to the active serine of APEH. The closed β-lactam ring is essential for inhibition and the heterocycle and/or the configuration of side chain would be important.

文献信息
期刊
Xenobiotica; the fate of foreign compounds in biological systems
期刊简称
Xenobiotica
发表日期
2012-02-10
收录日期
2011-10-10
更新日期
2014-11-20
语言
英语
国家/地区
England
NLM ID
1306665
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