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PMID: 26951671 已发表 · ppublish 英语

Structure and mechanism of the phage T4 recombination mediator protein UvsY.

Gajewski Stefan, Waddell Michael Brett, Vaithiyalingam Sivaraja, Nourse Amanda, Li Zhenmei, Woetzel Nils, Alexander Nathan, Meiler Jens, White Stephen W

摘要

The UvsY recombination mediator protein is critical for efficient homologous recombination in bacteriophage T4 and is the functional analog of the eukaryotic Rad52 protein. During T4 homologous recombination, the UvsX recombinase has to compete with the prebound gp32 single-stranded binding protein for DNA-binding sites and UvsY stimulates this filament nucleation event. We report here the crystal structure of UvsY in four similar open-barrel heptameric assemblies and provide structural and biophysical insights into its function. The UvsY heptamer was confirmed in solution by centrifugation and light scattering, and thermodynamic analyses revealed that the UvsY-ssDNA interaction occurs within the assembly via two distinct binding modes. Using surface plasmon resonance, we also examined the binding of UvsY to both ssDNA and the ssDNA-gp32 complex. These analyses confirmed that ssDNA can bind UvsY and gp32 independently and also as a ternary complex. They also showed that residues located on the rim of the heptamer are required for optimal binding to ssDNA, thus identifying the putative ssDNA-binding surface. We propose a model in which UvsY promotes a helical ssDNA conformation that disfavors the binding of gp32 and initiates the assembly of the ssDNA-UvsX filament.

关键词
DNA architecture DNA binding crystallography homologous recombination structural modification
文献信息
期刊
Proceedings of the National Academy of Sciences of the United States of America
期刊简称
Proc Natl Acad Sci U S A
发表日期
2016-09-09
收录日期
2016-04-02
更新日期
2016-10-19
语言
英语
国家/地区
United States
NLM ID
7505876
分析服务
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