首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >New structural and mechanistic insight into the A-rule and the instructional and non-instructional behavior of DNA photoproducts and other lesions.
【24h】

New structural and mechanistic insight into the A-rule and the instructional and non-instructional behavior of DNA photoproducts and other lesions.

机译:对A规则以及DNA光产品和其他病变的指导性和非指导性行为的新的结构和机制洞察力。

获取原文
获取原文并翻译 | 示例
           

摘要

The A-rule in mutagenesis was originally proposed to explain the preponderance of X-->T mutations observed for abasic sites and UV damaged sites. It was deduced that when a polymerase was faced with a non-instructional lesion, typified by an abasic site, it would preferentially incorporate an A. In the absence of any other compelling explanation, any lesion causing an X-->T mutation has often been classified as non-instructional to account for its apparent lack of instructional ability. The A-rule and the classification of lesions as non-instructional were formulated before the active sites of any polymerases or the mechanism by which they synthesized DNA were known. Since then, much structural and kinetic data on DNA polymerases has emerged to suggest mechanistic explanations for the A-rule and the instructive and non-instructive behavior of lesions such as cis-syn dimers. Polymerases involved in the replication of undamaged DNA have highly constrained active sites that evolved to only accommodate the templating base and the complementary nucleotide and as a result are relatively intolerant of modifications that alter the size and shape of the nascent base pair. On the other hand, DNA damage bypass polymerases have much more open and less constrained active sites, which are much more tolerant of modifications. An otherwise instructional lesion would become non-instructional if it were unable to fit into the active site, and thereby behave transiently like an abasic site, leading to the insertion of whichever nucleotide is favored by the polymerase, generally an A. In this review, what is known about the active sites and mechanisms of replicative and DNA damage bypass polymerases will be discussed with regard to the A-rule and non-instructive behavior of lesions, typified by dipyrimidine photoproducts.
机译:最初提出了诱变中的A规则来解释在无碱基位点和紫外线受损位点观察到的X-> T突变的优势。可以推断,当聚合酶遇到以无碱基位点为代表的非指导性病变时,它会优先掺入A。在没有其他令人信服的解释的情况下,任何引起X-> T突变的病变通常被归类为非教学类,原因是其明显缺乏教学能力。在知道任何聚合酶的活性位点或合成DNA的机理之前,先制定A规则和将损伤分类为非指导性的。从那时起,有关DNA聚合酶的许多结构和动力学数据就出现了,从而为A规则以及诸如顺式-顺式二聚体之类的病变的指导性和非指导性行为提供了机械解释。涉及未破坏的DNA复制的聚合酶具有高度受限的活性位点,这些活性位点进化为仅容纳模板碱基和互补核苷酸,因此相对不容许改变新生碱基对的大小和形状的修饰。另一方面,DNA损伤旁路聚合酶具有更大的开放性和更少受约束的活性位点,它们对修饰的耐受性更高。如果原本具有指导意义的病变无法适应活性位点,则将变成非指导性病变,从而表现得像无碱基位点一样短暂地发生,从而导致聚合酶偏好的核苷酸(通常为A)的插入。关于复核和DNA损伤旁路聚合酶的活性位点和机制的已知知识,将以二嘧啶光产物为代表,讨论病变的A规则和非指导性行为。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号