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大肠杆菌DNA聚合酶I和嗜热栖热菌DNA聚合酶IV对N-脱氧鸟苷苯并[a]芘加合物的诱变复制

Mutagenic Replication of N-Deoxyguanosine Benzo[a]pyrene Adducts by Escherichia coli DNA Polymerase I and Sulfolobus solfataricus DNA Polymerase IV.

作者信息

Gowda A S Prakasha, Krzeminski Jacek, Amin Shantu, Suo Zucai, Spratt Thomas E

机构信息

Department of Biochemistry and Molecular Biology, Milton S. Hershey Medical Center, Pennsylvania State University College of Medicine , Hershey, Pennsylvania 17033, United States.

Department of Pharmacology, Milton S. Hershey Medical Center, Pennsylvania State University College of Medicine , Hershey, Pennsylvania 17033, United States.

出版信息

Chem Res Toxicol. 2017 May 15;30(5):1168-1176. doi: 10.1021/acs.chemrestox.6b00466. Epub 2017 Apr 19.

Abstract

Benzo[a]pyrene, a potent human carcinogen, is metabolized in vivo to a diol epoxide that reacts with the N-position of guanine to produce N-BP-dG adducts. These adducts are mutagenic causing G to T transversions. These adducts block replicative polymerases but can be bypassed by the Y-family translesion synthesis polymerases. The mechanisms by which mutagenic bypass occurs is not well-known. We have evaluated base pairing structures using atomic substitution of the dNTP with two stereoisomers, 2'-deoxy-N-[(7R,8S,9R,10S)-7,8,9,10-tetrahydro-7,8,9-trihydroxybenzo[a]pyren-10-yl]guanosine and 2'-deoxy-N-[(7S,8R,9S,10R)-7,8,9,10-tetrahydro-7,8,9-trihydroxybenzo[a]pyren-10-yl]guanosine. We have examined the kinetics of incorporation of 1-deaza-dATP, 7-deaza-dATP, 2'-deoxyinosine triphosphate, and 7-deaza-dGTP, analogues of dATP and dGTP in which single atoms are changed. Changes in rate will occur if that atom provided a critical interaction in the transition state of the reaction. We examined two polymerases, Escherichia coli DNA polymerase I (Kf) and Sulfolobus solfataricus DNA polymerase IV (Dpo4), as models of a high fidelity and TLS polymerase, respectively. We found that with Kf, substitution of the nitrogens on the Watson-Crick face of the dNTPs resulted in decreased rate of reactions. This result is consistent with a Hoogsteen base pair in which the template N-BP-dG flipped from the anti to syn conformation. With Dpo4, while the substitution did not affect the rate of reaction, the amplitude of the reaction decreased with all substitutions. This result suggests that Dpo4 bypasses N-BP-dG via Hoogsteen base pairs but that the flipped nucleotide can be either the dNTP or the template.

摘要

苯并[a]芘是一种强效的人类致癌物,在体内代谢为二醇环氧化物,该二醇环氧化物与鸟嘌呤的N位反应生成N - BP - dG加合物。这些加合物具有致突变性,会导致G到T的颠换。这些加合物会阻断复制性聚合酶,但可以被Y家族跨损伤合成聚合酶绕过。诱变绕过发生的机制尚不清楚。我们使用两种立体异构体对dNTP进行原子取代来评估碱基配对结构,这两种立体异构体分别是2'-脱氧-N-[(7R,8S,9R,10S)-7,8,9,10-四氢-7,8,9-三羟基苯并[a]芘-10-基]鸟苷和2'-脱氧-N-[(7S,8R,9S,10R)-7,8,9,10-四氢-7,8,9-三羟基苯并[a]芘-10-基]鸟苷。我们研究了1-脱氮-dATP、7-脱氮-dATP、2'-脱氧肌苷三磷酸和7-脱氮-dGTP(dATP和dGTP的类似物,其中单个原子发生了变化)掺入的动力学。如果该原子在反应的过渡态提供了关键相互作用,那么反应速率将会发生变化。我们分别以大肠杆菌DNA聚合酶I(Kf)和嗜热栖热菌DNA聚合酶IV(Dpo4)作为高保真聚合酶和跨损伤合成聚合酶的模型进行了研究。我们发现,对于Kf,dNTPs沃森-克里克面上的氮原子被取代会导致反应速率降低。这一结果与Hoogsteen碱基对一致,即模板N - BP - dG从反式构象翻转到顺式构象。对于Dpo4,虽然取代不影响反应速率,但所有取代都会使反应幅度降低。这一结果表明,Dpo4通过Hoogsteen碱基对绕过N - BP - dG,但翻转的核苷酸可以是dNTP或模板。

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