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化学物质和辐射与DNA相互作用中的序列特异性。

Sequence specificities in the interactions of chemicals and radiations with DNA.

作者信息

Wilkins R J

出版信息

Mol Cell Biochem. 1984 Sep;64(2):111-26. doi: 10.1007/BF00224768.

Abstract

Sequence specificities in the interactions of chemicals and radiations with DNA are reviewed. Emphasis is placed on information which has been obtained by adapting DNA sequencing techniques to the detection of DNA damage and modifications. The actions of anti-tumor drugs, non-covalent DNA binders and UV irradiation are discussed in terms of both modifications induced in DNA and the subsequent response of DNA polymerase and repair enzymes. Particular attention is paid to the evidence for 'sequence-specific' interactions of these agents with DNA. It is concluded that while most agents exhibit 'warm' or even 'hot' spots in their interactions with DNA there is not, as yet, compelling evidence for extreme selectivity down to say the gene level in their actions. There does, however, appear to be some affinity, particularly in the case of non-covalent binders, for certain tertiary structures rather than primary sequences per se. In addition, both misincorporation opposite DNA damage and the bypass of damage by polymerases are important phenomena which, to some extent, exhibit sequence specificities. The idea is advanced that DNA structures such as hairpins or cruciforms maybe important in vivo targets for many agents giving rise to specific biological effects.

摘要

本文综述了化学物质和辐射与DNA相互作用中的序列特异性。重点在于通过调整DNA测序技术来检测DNA损伤和修饰所获得的信息。从DNA诱导的修饰以及DNA聚合酶和修复酶的后续反应方面,讨论了抗肿瘤药物、非共价DNA结合剂和紫外线照射的作用。特别关注这些试剂与DNA“序列特异性”相互作用的证据。得出的结论是,虽然大多数试剂在与DNA相互作用时表现出“热点”甚至“超热点”,但目前尚无令人信服的证据表明它们的作用具有极端选择性,比如达到基因水平。然而,对于某些三级结构而非一级序列本身,似乎确实存在一些亲和力,特别是在非共价结合剂的情况下。此外,DNA损伤对面的错误掺入以及聚合酶对损伤的绕过都是重要现象,在一定程度上表现出序列特异性。有人提出,诸如发夹或十字形等DNA结构可能是许多产生特定生物学效应的试剂在体内的重要靶点。

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