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大肠杆菌中反向重复DNA的缺失:体内长度、热稳定性和十字形结构形成的影响

On the deletion of inverted repeated DNA in Escherichia coli: effects of length, thermal stability, and cruciform formation in vivo.

作者信息

Sinden R R, Zheng G X, Brankamp R G, Allen K N

机构信息

Department of Molecular Genetics, Biochemistry, and Microbiology, University of Cincinnati College of Medicine, Ohio 45267-0524.

出版信息

Genetics. 1991 Dec;129(4):991-1005. doi: 10.1093/genetics/129.4.991.

Abstract

We have studied the deletion of inverted repeats cloned into the EcoRI site within the CAT gene of plasmid pBR325. A cloned inverted repeat constitutes a palindrome that includes both EcoRI sites flanking the insert. In addition, the two EcoRI sites represent direct repeats flanking a region of palindromic symmetry. A current model for deletion between direct repeats involves the formation of DNA secondary structure which may stabilize the misalignment between the direct repeats during DNA replication. Our results are consistent with this model. We have analyzed deletion frequencies for several series of inverted repeats, ranging from 42 to 106 bp, that were designed to form cruciforms at low temperatures and at low superhelical densities. We demonstrate that length, thermal stability of base pairing in the hairpin stem, and ease of cruciform formation affect the frequency of deletion. In general, longer palindromes are less stable than shorter ones. The deletion frequency may be dependent on the thermal stability of base pairing involving approximately 16-20 bp from the base of the hairpin stem. The formation of cruciforms in vivo leads to a significant increase in the deletion frequency. A kinetic model is presented to describe the relationship between the physical-chemical properties of DNA structure and the deletion of inverted repeats in living cells.

摘要

我们研究了克隆到质粒pBR325的CAT基因内EcoRI位点的反向重复序列的缺失情况。一个克隆的反向重复序列构成一个回文结构,其中包括插入片段两侧的两个EcoRI位点。此外,这两个EcoRI位点代表了回文对称区域两侧的同向重复序列。目前关于同向重复序列之间缺失的模型涉及DNA二级结构的形成,这种结构可能在DNA复制过程中稳定同向重复序列之间的错配。我们的结果与该模型一致。我们分析了几个系列的反向重复序列的缺失频率,其长度从42到106 bp不等,这些反向重复序列被设计为在低温和低超螺旋密度下形成十字形结构。我们证明,长度、发夹茎中碱基对的热稳定性以及十字形结构形成的难易程度会影响缺失频率。一般来说,较长的回文结构比较短的回文结构稳定性更低。缺失频率可能取决于涉及发夹茎基部约16 - 20 bp的碱基对的热稳定性。体内十字形结构的形成会导致缺失频率显著增加。我们提出了一个动力学模型来描述DNA结构的物理化学性质与活细胞中反向重复序列缺失之间的关系。

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