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Human replication protein A (RPA) binds a primer–template junction in the absence of its major ssDNA-binding domains

机译:人类复制蛋白A(RPA)在没有主要ssDNA结合域的情况下结合引物-模板连接

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摘要

The human nuclear single-stranded (ss) DNA- binding protein, replication protein A (RPA), is a heterotrimer consisting of three subunits: p70, p32 and p14. The protein–DNA interaction is mediated by several DNA-binding domains (DBDs): two major (A and B, also known as p70A and p70B) and several minor (C and D, also known as p70C and p32D, and, presumably, by p70N). Here, using crosslinking experiments, we investigated an interaction of RPA deletion mutants containing a subset of the DBDs with partial DNA duplexes containing 5'-protruding ssDNA tails of 10, 20 and 30 nt. The crosslinks were generated using either a ‘zero-length’ photoreactive group (4-thio-2'-deoxyuridine-5'-monophosphate) embedded in the 3' end of the DNA primer, or a group connected to the 3' end by a lengthy linker (5-{N-[N-(4-azido-2,5-difluoro-3- chloropyridine-6-yl)-3-aminopropionyl]-trans-3-aminopropenyl-1}-2'-deoxyuridine-5'-monophosphate). In the absence of two major DBDs, p70A and p70B, the RPA trimerization core (p70C·p32D·p14) was capable of correctly recognizing the primer– template junction and adopting an orientation similar to that in native RPA. Both p70C and p32D contributed to this recognition. However, the domain contribution differed depending on the size of the ssDNA. In contrast with the trimerization core, the RPA dimerization core (p32D·p14) was incapable of detectably recognizing the DNA- junction structures, suggesting an orchestrating role for p70C in this process.
机译:人核单链(ss)DNA结合蛋白复制蛋白A(RPA)是由三个亚基组成的异三聚体:p70,p32和p14。蛋白质与DNA的相互作用是由几个DNA结合域(DBD)介导的:两个主要的(A和B,也称为p70A和p70B)和几个次要的(C和D,也称为p70C和p32D),大概通过p70N)。在这里,使用交联实验,我们调查了包含DBD子集的RPA缺失突变体与包含5'突出的10、20和30 nt的ssDNA尾部的DNA部分双链体的相互作用。使用嵌入在DNA引物3'末端的'零长度'光反应性基团(4-thio-2'-deoxyuridine-5'-monophosphate)或通过以下方式连接到3'末端的基团生成交联键长的接头(5- {N- [N-(4-叠氮基-2,5-二氟-3-氯吡啶-6-基)-3-氨基丙酰基]-反式-3-氨基丙烯基-1} -2'-脱氧尿苷-5'-单磷酸盐)。在没有两个主要DBD p70A和p70B的情况下,RPA三聚化核心(p70C·p32D·p14)能够正确识别引物-模板连接,并采用与天然RPA相似的取向。 p70C和p32D都有助于这一认识。但是,结构域的贡献取决于ssDNA的大小。与三聚化核心相反,RPA二聚化核心(p32D·p14)无法检测到识别DNA连接结构,表明p70C在此过程中具有协调作用。

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