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复制蛋白A串联高亲和力单链DNA结合结构域的独立与协同功能

Independent and coordinated functions of replication protein A tandem high affinity single-stranded DNA binding domains.

作者信息

Arunkumar Alphonse I, Stauffer Melissa E, Bochkareva Elena, Bochkarev Alexey, Chazin Walter J

机构信息

Departments of Biochemistry and Physics and Center for Structural Biology, Vanderbilt University, Nashville, Tennessee 37232-8725, USA.

出版信息

J Biol Chem. 2003 Oct 17;278(42):41077-82. doi: 10.1074/jbc.M305871200. Epub 2003 Jul 24.

Abstract

The initial high affinity binding of single-stranded DNA (ssDNA) by replication protein A (RPA) is involved in the tandem domains in the central region of the RPA70 subunit (RPA70AB). However, it was not clear whether the two domains, RPA70A and RPA70B, bind DNA simultaneously or sequentially. Here, using primarily heteronuclear NMR complemented by fluorescence spectroscopy, we have analyzed the binding characteristics of the individual RPA70A and RPA70B domains and compared them with the intact RPA70AB. NMR chemical shift comparisons confirmed that RPA70A and RPA70B tumble independently in solution in the absence of ssDNA. NMR chemical shift perturbations showed that all ssDNA oligomers bind to the same sites as observed in the x-ray crystal structure of RPA70AB complexed to d(C)8. Titrations using a variety of 5'-mer ssDNA oligomers showed that RPA70A has a 5-10-fold higher affinity for ssDNA than RPA70B. Detailed analysis of ssDNA binding to RPA70A revealed that all DNA sequences interact in a similar mode. Fluorescence binding measurements with a variety of 8-10'-mer DNA sequences showed that RPA70AB interacts with DNA with approximately 100-fold higher affinity than the isolated domains. Calculation of the theoretical "linkage effect" from the structure of RPA70AB suggests that the high overall affinity for ssDNA is a byproduct of the covalent attachment of the two domains via a short flexible tether, which increases the effective local concentration. Taken together, our data are consistent with a sequential model of DNA binding by RPA according to which RPA70A binds the majority of DNA first and subsequent loading of RPA70B domain is facilitated by the linkage effect.

摘要

复制蛋白A(RPA)对单链DNA(ssDNA)的初始高亲和力结合涉及RPA70亚基(RPA70AB)中央区域的串联结构域。然而,尚不清楚RPA70A和RPA70B这两个结构域是同时还是依次结合DNA。在这里,我们主要使用异核核磁共振并辅以荧光光谱,分析了单个RPA70A和RPA70B结构域的结合特性,并将它们与完整的RPA70AB进行了比较。核磁共振化学位移比较证实,在没有ssDNA的情况下,RPA70A和RPA70B在溶液中独立翻滚。核磁共振化学位移扰动表明,所有ssDNA寡聚物都与结合到d(C)8的RPA70AB的X射线晶体结构中观察到的相同位点结合。使用各种5'-聚体ssDNA寡聚物进行的滴定表明,RPA70A对ssDNA的亲和力比RPA70B高5-10倍。对ssDNA与RPA70A结合的详细分析表明,所有DNA序列都以相似的模式相互作用。对各种8-10'-聚体DNA序列进行的荧光结合测量表明,RPA70AB与DNA相互作用的亲和力比分离的结构域高约100倍。根据RPA70AB的结构计算理论“连接效应”表明,对ssDNA的高整体亲和力是两个结构域通过短柔性连接子共价连接的副产物,这增加了有效局部浓度。综上所述,我们的数据与RPA结合DNA的顺序模型一致,根据该模型,RPA70A首先结合大部分DNA,随后RPA70B结构域的加载通过连接效应得到促进。

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