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Mapping DNA conformations and interactions within the binding cleft of bacteriophage T4 single-stranded DNA binding protein (gp32) at single nucleotide resolution

机译:在单一核苷酸分辨率下将DNA构象和在噬菌体T4单链DNA结合蛋白(GP32)的结合裂缝中的相互作用

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摘要

In this study, we use single-stranded DNA (oligo-dT) lattices that have been position-specifically labeled with monomer or dimer 2-aminopurine (2-AP) probes to map the local interactions of the DNA bases with the nucleic acid binding cleft of gp32, the single-stranded binding (ssb) protein of bacteriophage T4. Three complementary spectroscopic approaches are used to characterize these local interactions of the probes with nearby nucleotide bases and amino acid residues at varying levels of effective protein binding cooperativity, as manipulated by changing lattice length. These include: (i) examining local quenching and enhancing effects on the fluorescence spectra of monomer 2-AP probes at each position within the cleft; (ii) using acrylamide as a dynamic-quenching additive to measure solvent access to monomer 2-AP probes at each ssDNA position; and (iii) employing circular dichroism spectra to characterize changes in exciton coupling within 2-AP dimer probes at specific ssDNA positions within the protein cleft. The results are interpreted in part by what we know about the topology of the binding cleft from crystallographic studies of the DNA binding domain of gp32 and provide additional insights into how gp32 can manipulate the ssDNA chain at various steps of DNA replication and other processes of genome expression.
机译:在这项研究中,我们使用单链DNA(oligo-dt)晶格,该晶格已经用单体或二聚氨基嘌呤(2-AP)探针特异性标记,以将DNA碱基与核酸结合的局部相互作用映射GP32的裂缝,噬菌体T4的单链结合(SSB)蛋白。三种互补光谱方法用于将附近核苷酸碱基和氨基酸残基的探针的局部相互作用表征在不同水平的有效蛋白质结合合作的相互作用中,通过改变晶格长度来操纵。这些包括:(i)检查在裂缝内每个位置的单体2-AP探针的荧光光谱的局部猝灭和增强效果; (ii)使用丙烯酰胺作为动态淬火添加剂,以测量每个SSDNA位置对单体2-AP探针的溶剂途径; (III)采用圆形二色性光谱,以表征在蛋白质裂缝内的特异性SSDNA位置的2-AP二聚体探针内的激子偶联中的变化。结果是通过GP32的DNA结合结构域的结晶研究的结晶研究的拓扑结构的一部分解释,并提供了在DNA复制的各个步骤中如何操纵SSDNA链和基因组的其他过程的额外见解表达。

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