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[关于涉及2C亚家族细胞色素P450的多氯联苯毒性的研究]

[Studies on PCB toxicity involving 2C subfamily cytochrome P450].

作者信息

Ariyoshi N, Ito S, Okudaira A, Mise M, Matsusue K, Yamada H, Oguri K

机构信息

Department of Hygienic and Forensic Chemistry, Faculty of Pharmaceutical Sciences, Kyushu University, Fukuoka.

出版信息

Fukuoka Igaku Zasshi. 1995 May;86(5):153-62.

PMID:7628802
Abstract

It has been demonstrated that PCB metabolism is mainly catalyzed by 1A and 2B subfamily cytochrome P450s, CYP1A1/2 and CYP2B1/2. These studies were conducted mostly with hepatic enzymes in rodents. The 1A and 2B subfamily P450 s are constitutively expressed little, but markedly induced by xenobiotics such as 3-methylcholanthrene and phenobarbital in rodents. On the other hand, the recent studies showed that cytochrome P450s in human liver are remarkably different from isoform of rodents in constitution and enzyme activities. In the present study, we first tried to metabolize some PCBs with 2C subfamily cytochrome P450 (CYP2C) purified from dog liver microsomes. The data suggested that CYP2C may not be involved in PCB metabolism. Since CYP2C is the same most abundant enzyme as 3A subfamily P450 in human liver and plays a major role for metabolism of many drugs used clinically, and may also play an important role for metabolism of some steroid hormones, we further studied the inhibition of CYP2C-catalyzed steroid metabolism by typical PCB congeners. CYP2C-mediated steroid metabolism is greatly inhibited by 2, 4, 5, 2', 4', 5'-hexachlorbiphenyl, but not by 3, 4, 5, 3', 4'-pentachlorobiphenyl. On the contrary, 3, 4, 5, 3', 4'-pentachlorobiphenyl markedly suppressed CYP2C expression in the dog liver. These results suggest that residual PCBs may affect the current situation of steroid hormones in Yusho patients, and may cause PCB drug interactions.

摘要

已证明多氯联苯(PCB)代谢主要由1A和2B亚家族的细胞色素P450,即CYP1A1/2和CYP2B1/2催化。这些研究大多是在啮齿动物的肝脏酶上进行的。1A和2B亚家族的P450在正常情况下表达很少,但在啮齿动物中会被异生素如3-甲基胆蒽和苯巴比妥显著诱导。另一方面,最近的研究表明,人类肝脏中的细胞色素P450在组成和酶活性方面与啮齿动物的同工型有显著差异。在本研究中,我们首先尝试用从狗肝脏微粒体中纯化的2C亚家族细胞色素P450(CYP2C)代谢一些多氯联苯。数据表明CYP2C可能不参与多氯联苯代谢。由于CYP2C在人类肝脏中与3A亚家族P450一样是最丰富的酶,并且在许多临床使用药物的代谢中起主要作用,还可能在一些甾体激素的代谢中起重要作用,我们进一步研究了典型的多氯联苯同系物对CYP2C催化的甾体代谢的抑制作用。2,4,5,2',4',5'-六氯联苯可极大地抑制CYP2C介导的甾体代谢,但3,4,5,3',4'-五氯联苯则无此作用。相反,3,4,5,3',4'-五氯联苯可显著抑制狗肝脏中CYP2C的表达。这些结果表明,残留的多氯联苯可能会影响 Yusho 患者体内甾体激素的现状,并可能导致多氯联苯与药物的相互作用。

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