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Thermodynamics of the DNA structural selectivity of the Pol I DNA polymerases from Escherichia coli and Thermus aquaticus.

机译:来自大肠杆菌和水生栖热菌的Pol I DNA聚合酶的DNA结构选择性的热力学。

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Understanding the thermodynamics of substrate selection by DNA polymerase I is important for characterizing the balance between replication and repair for this enzyme in vivo. Due to their sequence and structural similarities, Klenow and Klentaq, the large fragments of the Pol I DNA polymerases from Escherichia coli and Thermus aquaticus, are considered functional homologs. Klentaq, however, does not have a functional proofreading site. Examination of the DNA binding thermodynamics of Klenow and Klentaq to different DNA structures: single-stranded DNA (ss-DNA), primer-template DNA (pt-DNA), and blunt-end double-stranded DNA (ds-DNA) show that the binding selectivity pattern is similar when examined across a wide range of salt concentration, but can significantly differ at any individual salt concentration. For both proteins, binding of single-stranded DNA shifts from weakest to tightest binding of the three structures as the salt concentration increases. Both Klenow and Klentaq release two to three more ions when binding to pt-DNA and ds-DNA than when binding to ss-DNA. Klenow exhibits significant differences in the Delta C(p) of binding to pt-DNA versus ds-DNA, and a difference in pI for these two complexes, whereas Klentaq does not, suggesting that Klenow and Klentaq discriminate between these two structures differently. Taken together, the data suggest that the two polymerases bind ds-DNA very differently, but that both bind pt-DNA and ss-DNA similarly, despite the absence of a proofreading site in Klentaq.
机译:了解DNA聚合酶I对底物选择的热力学对于表征该酶在体内复制和修复之间的平衡非常重要。由于它们的序列和结构相似性,来自大肠杆菌和水生栖热菌的Pol I DNA聚合酶的大片段Klenow和Klentaq被认为是功能同源物。但是,Klentaq没有实用的校对站点。检查Klenow和Klentaq与不同DNA结构的DNA结合热力学:单链DNA(ss-DNA),引物模板DNA(pt-DNA)和平端双链DNA(ds-DNA)表明:当在宽范围的盐浓度下进行检查时,结合选择性模式相似,但在任何单独的盐浓度下均可能存在显着差异。对于两种蛋白质,随着盐浓度的增加,单链DNA的结合从三个结构的最弱结合变为最紧密结合。与pt-DNA和ds-DNA结合时,Klenow和Klentaq释放的离子比与ss-DNA结合时释放的离子多两到三个。 Klenow在与pt-DNA和ds-DNA结合的Delta C(p)中显示出显着差异,并且对于这两种复合物在pI中也存在差异,而Klentaq则没有,这表明Klenow和Klentaq在这两种结构之间有区别。两者合计,数据表明这两种聚合酶结合ds-DNA的方式非常不同,但是尽管Klentaq中没有校对位点,但它们都相似地结合pt-DNA和ss-DNA。

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