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肺炎链球菌转化过程中错配碱基对的切除与修复

Excision and repair of mismatched base pairs in transformation of Streptococcus pneumoniae.

作者信息

Claverys J P, Roger M, Sicard A M

出版信息

Mol Gen Genet. 1980 Apr;178(1):191-201. doi: 10.1007/BF00267229.

Abstract

The use of heteroduplex DNA molecules as donors in pneumococcal transformation makes it possible to follow the fate of each DNA strand. The integration efficiency of each strand depends strongly upon the single base changes it carries. The function (hex) which reduces drastically the transformation yield of markers referred to as low efficiency (LE) tends to remove either donor strand without respect ot which one is introduced. In the case of high efficiency (HE) markers the reduction in the transformation yield involves the elimination of only one donor strand. For a given locus it can be either one depending upon the mutation. The reduction in transformation yield can be less drastic for HE markers than for both strands of the LE markers. These data are discussed in terms of differences in the affinity for mismatched base pairs. We have studied the transfer of information from each donor DNA strand to the recipient genome, on the basis of differences in the rates of phenotypic expression of a given marker introduced on opposite strands. Results show that, as in the case of LE markers, the information from HE markers, when introduced on the strand recognized by the hex function, is transmitted to both strands of the recipient molecule. Correction of the recipient strand to homozygosis probably accounts for this information transfer. These results, together with earlier investigations, strongly suggest that the hex function is an excision-repair system acting on donor-recipient base pair mismatches.

摘要

在肺炎球菌转化中使用异源双链DNA分子作为供体,使得追踪每条DNA链的命运成为可能。每条链的整合效率在很大程度上取决于其携带的单碱基变化。一种功能(hex)会大幅降低被称为低效(LE)标记的转化产量,它倾向于去除任意一条供体链,而不考虑引入的是哪一条。对于高效(HE)标记,转化产量的降低仅涉及去除一条供体链。对于给定的基因座,取决于突变情况,可能是任意一条链。HE标记的转化产量降低可能不如LE标记的两条链那么显著。这些数据根据对错配碱基对亲和力的差异进行了讨论。基于在相反链上引入的给定标记表型表达速率的差异,我们研究了从每条供体DNA链到受体基因组的信息传递。结果表明,与LE标记的情况一样,当HE标记引入到被hex功能识别的链上时,其信息会传递到受体分子的两条链上。受体链校正为纯合状态可能解释了这种信息传递。这些结果与早期研究一起,强烈表明hex功能是一种作用于供体 - 受体碱基对错配的切除修复系统。

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