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含合成无碱基位点的DNA模板上的突变机制:双链载体研究

Mechanism of mutation on DNA templates containing synthetic abasic sites: study with a double strand vector.

作者信息

Takeshita M, Eisenberg W

机构信息

State University of New York at Stony Brook, Department of Pharmacological Sciences 11794-8651.

出版信息

Nucleic Acids Res. 1994 May 25;22(10):1897-902. doi: 10.1093/nar/22.10.1897.

Abstract

Mutagenesis at abasic sites was investigated in E.coli and simian kidney (COS) cells using a duplex shuttle vector containing synthetic analogs of deoxyribose on the phosphodiester backbone. Lesions were positioned on opposite strands of the vector. When the tetrahydrofuranyl analog was used as the abasic site, AT or TA pairs (65-80%) were introduced at the site of the bistrand lesion. Mutagenesis occurred in the absence of SOS induction. Single base deletions (> 80%) dominated the mutational spectra for propanyl and ethanyl analogs of abasic sites lacking a ring structure. For all abasic site analogs, a small proportion of G/C and C/G pairs (6-10%) were observed. dAMP was incorporated predominantly opposite tetrahydrofuranyl sites positioned in the single strand region of a gapped duplex vector. We conclude from these studies that abasic sites positioned in a bistrand configuration are highly mutagenic in E.coli and COS cells. Repair DNA synthesis may be involved in this process.

摘要

使用一种在磷酸二酯主链上含有脱氧核糖合成类似物的双链穿梭载体,在大肠杆菌和猴肾(COS)细胞中研究了无碱基位点的诱变作用。损伤位于载体的相反链上。当使用四氢呋喃基类似物作为无碱基位点时,在双链损伤位点引入了AT或TA对(65 - 80%)。诱变在没有SOS诱导的情况下发生。对于缺乏环结构的无碱基位点的丙基和乙基类似物,单碱基缺失(> 80%)在突变谱中占主导。对于所有无碱基位点类似物,观察到一小部分G/C和C/G对(6 - 10%)。dAMP主要掺入位于缺口双链载体单链区域的四氢呋喃基位点对面。我们从这些研究中得出结论,处于双链构型的无碱基位点在大肠杆菌和COS细胞中具有高度诱变作用。修复DNA合成可能参与了这一过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b83/308091/63be5a8940f6/nar00034-0125-a.jpg

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