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苯并[a]芘对大鼠肝细胞核DNA合成及DNA聚合酶活性的影响。

Effect of benzo[a]pyrene on DNA synthesis and DNA polymerase activity of rat liver nuclei.

作者信息

Salazar I, Tarragó-Litvak L, Litvak S, Gil L

出版信息

Biochem Pharmacol. 1985 Mar 15;34(6):755-62. doi: 10.1016/0006-2952(85)90754-3.

Abstract

When benzo[a]pyrene (B[a]P) was administered intraperitoneally to rats 48 hr before they were killed, the DNA-synthesizing capability of isolated rat liver nuclei was decreased as compared with control animals. B[a]P also inhibited in vitro DNA synthesis in nuclei purified from control animals; this effect was enhanced by NADPH. DNA polymerases solubilized from purified nuclei of B[a]P-treated animals were less active than those of control animals. DNA polymerase alpha was more inhibited than DNA polymerase beta. Purified rat liver nuclei devoid of cytoplasmic contamination possess an NADPH-dependent B[a]P hydroxylase activity. The observed inhibition of DNA synthesis in nuclei isolated from B[a]P-treated rats was increased by NADPH. Moreover, there was an increased inhibition of DNA polymerase activity by nuclear membranes obtained from B[a]P-treated animals when the incubations were performed in the presence of NADPH. Also, the derivative B[a]P-trans-9,10-dihydrodiol was a potent inhibitor of DNA polymerase alpha under conditions where DNA polymerase beta was less affected. These results suggest that nuclear B[a]P hydroxylase might be involved in the inhibition of DNA synthesis probably at the level of DNA polymerase alpha. As in the in vivo studies, the nuclear polymerase most affected by the hydrocarbon in vitro was DNA polymerase alpha.

摘要

在处死大鼠前48小时经腹腔注射苯并[a]芘(B[a]P),与对照动物相比,分离出的大鼠肝细胞核的DNA合成能力降低。B[a]P还抑制从对照动物纯化的细胞核的体外DNA合成;NADPH可增强此效应。从经B[a]P处理动物的纯化细胞核中溶解的DNA聚合酶的活性低于对照动物。DNA聚合酶α比DNA聚合酶β受抑制更明显。不含细胞质污染的纯化大鼠肝细胞核具有NADPH依赖性B[a]P羟化酶活性。NADPH可增强从经B[a]P处理的大鼠分离的细胞核中观察到的DNA合成抑制作用。此外,当在NADPH存在下进行孵育时,从经B[a]P处理的动物获得的核膜对DNA聚合酶活性的抑制作用增强。而且,在DNA聚合酶β受影响较小的条件下,衍生物B[a]P -反式-9,10-二氢二醇是DNA聚合酶α的有效抑制剂。这些结果表明,核B[a]P羟化酶可能参与DNA合成的抑制,可能是在DNA聚合酶α水平。与体内研究一样,体外受碳氢化合物影响最大的核聚合酶是DNA聚合酶α。

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