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反向重复DNA序列中心的碱基组成对DNA中十字形转变的影响。

Effect of base composition at the center of inverted repeated DNA sequences on cruciform transitions in DNA.

作者信息

Zheng G X, Sinden R R

机构信息

Department of Biochemistry and Molecular Biology, University of Cincinnati College of Medicine, Ohio 45267-0522.

出版信息

J Biol Chem. 1988 Apr 15;263(11):5356-61.

PMID:3356690
Abstract

We have analyzed the effect of base composition at the center of symmetry of inverted repeated DNA sequences on cruciform transitions in supercoiled DNA. For this we have constructed two series of palindromic DNA sequences: one set with differing center and one set with differing center and arm sequences. The F series consists of two 96-base pair perfect inverted repeats which are identical except for the central 10 base pairs which consist of pure AT or GC base pairs. The S series was constructed such that the overall base composition of the inverted repeats was identical but in which the positioning of blocks of AT- and GC-rich sequences varied. The rate of cruciform formation for the inverted repeats in plasmid pUC8 was dramatically influenced by the 8-10 base pairs at the center of the inverted repeat. Inverted repeats with 8-10 AT base pairs in the center were kinetically much more active in cruciform formation than inverted repeats with 8-10 GC base pairs in the center. These experiments show a dominant influence of the center sequences of inverted repeats on the rate of cruciform formation.

摘要

我们分析了反向重复DNA序列对称中心的碱基组成对超螺旋DNA中十字形转变的影响。为此,我们构建了两组回文DNA序列:一组中心不同,另一组中心和臂序列均不同。F系列由两个96个碱基对的完美反向重复序列组成,除了由纯AT或GC碱基对组成的中间10个碱基对外,它们完全相同。构建S系列时,使反向重复序列的总体碱基组成相同,但富含AT和GC的序列块的位置不同。质粒pUC8中反向重复序列的十字形形成速率受到反向重复序列中心8 - 10个碱基对的显著影响。中心有8 - 10个AT碱基对的反向重复序列在十字形形成过程中的动力学活性比中心有8 - 10个GC碱基对的反向重复序列高得多。这些实验表明反向重复序列的中心序列对十字形形成速率有主导影响。

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