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老狗学新招:TraY与同型嘌呤-同型嘧啶序列结合会减弱DNA复制。

A new trick for an old dog: TraY binding to a homopurine-homopyrimidine run attenuates DNA replication.

作者信息

Krasilnikova M M, Smirnova E V, Krasilnikov A S, Mirkin S M

机构信息

Department of Molecular Genetics, University of Illinois at Chicago, Chicago, IL 60607, USA.

出版信息

J Mol Biol. 2001 Oct 19;313(2):271-82. doi: 10.1006/jmbi.2001.5059.

Abstract

The effects of the d(GA)(n).d(TC)(n) repeat on plasmid replication in Escherichia coli cells were analyzed using electrophoretic analysis of replication intermediates. This repeat appeared to stall the replication fork progression in E. coli strains carrying F' episomes. The potency of replication stalling increased with the repeat's length but did not depend on its orientation relative to the replication origin, or transcription through the repeat. Treatment of E. coli cells with the protein synthesis inhibitor chloramphenicol abolished replication blockage, indicating that protein binding might be responsible for the repeat-caused replication blockage. Concordantly, dimethylsulfate footprinting in vivo revealed methylation protection of all guanine residues within the d(GA)(n).d(TC)(n). Gel retardation assays with crude cell extracts confirmed the presence of a d(GA)(n).d(TC)(n) -binding activity in F', but not F(-), strains. Further, strains cured from the F' episome lost this activity, while F(-) strains that acquired the F' factor via conjugation, acquired d(GA)(n).d(TC)(n)-binding activity as well. Thus, this d(GA)(n).d(TC)(n)-binding protein is encoded by the F' factor. Purification of this protein by affinity chromatography revealed a single polypeptide with an apparent molecular mass of 15.2 kDa. Microsequencing of its two tryptic peptides revealed two perfect matches with the TraY protein, which is encoded by the F factor. Overexpression of an individual TraY protein in the F(-) E. coli strain conveyed d(GA)(n).d(TC)(n)-binding activity in vitro and replication stalling at d(GA)(n).d(TC)(n) repeats in vivo. We conclude that TraY binding to a homopurine-homopyrimidine repeat is responsible for stalling DNA replication. Biological applications of this phenomenon are discussed.

摘要

利用复制中间体的电泳分析,研究了d(GA)(n).d(TC)(n)重复序列对大肠杆菌细胞中质粒复制的影响。这种重复序列似乎会使携带F'附加体的大肠杆菌菌株中的复制叉前进停滞。复制停滞的效力随着重复序列长度的增加而增强,但不依赖于其相对于复制起点的方向,也不依赖于通过该重复序列的转录。用蛋白质合成抑制剂氯霉素处理大肠杆菌细胞可消除复制阻断,这表明蛋白质结合可能是重复序列导致复制阻断的原因。与此一致,体内硫酸二甲酯足迹法显示d(GA)(n).d(TC)(n)内所有鸟嘌呤残基均受到甲基化保护。用粗细胞提取物进行的凝胶阻滞试验证实,F'菌株中存在d(GA)(n).d(TC)(n)结合活性,而F(-)菌株中不存在。此外,从F'附加体中治愈的菌株失去了这种活性,而通过接合获得F'因子的F(-)菌株也获得了d(GA)(n).d(TC)(n)结合活性。因此,这种d(GA)(n).d(TC)(n)结合蛋白由F'因子编码。通过亲和层析纯化该蛋白,得到一种表观分子量为15.2 kDa的单一多肽。对其两个胰蛋白酶肽段进行微测序,发现与F因子编码的TraY蛋白有两个完全匹配。在F(-)大肠杆菌菌株中单独过表达TraY蛋白,在体外传递了d(GA)(n).d(TC)(n)结合活性,并在体内导致d(GA)(n).d(TC)(n)重复序列处的复制停滞。我们得出结论,TraY与同型嘌呤-同型嘧啶重复序列的结合导致了DNA复制的停滞。讨论了这一现象的生物学应用。

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