Institute of Molecular Biology and Department of Chemistry and Biochemistry, University of Oregon, Eugene, OR 97403, USA.
Department of Chemistry and Physics, Monmouth University, West Long Branch, NJ 07764, USA.
Nucleic Acids Res. 2021 Jan 25;49(2):916-927. doi: 10.1093/nar/gkaa1230.
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.
在这项研究中,我们使用了经过位置特异性标记有单体或二聚体 2-氨基嘌呤(2-AP)探针的单链 DNA(寡聚-dT)晶格,以绘制 DNA 碱基与噬菌体 T4 的单链结合(ssb)蛋白 gp32 的核酸结合裂隙的局部相互作用。三种互补的光谱方法用于表征这些探针与附近核苷酸碱基和氨基酸残基的局部相互作用,这些相互作用在不同水平的有效蛋白结合协同作用下发生变化,通过改变晶格长度来操纵。这些方法包括:(i)在裂隙内的每个位置检查单体 2-AP 探针的荧光光谱的局部猝灭和增强效应;(ii)使用丙烯酰胺作为动态猝灭添加剂来测量单体 2-AP 探针在每个 ssDNA 位置的溶剂可及性;(iii)采用圆二色性光谱来表征在蛋白裂隙内的特定 ssDNA 位置处 2-AP 二聚体探针内的激子耦合变化。这些结果部分通过我们从 gp32 的 DNA 结合域的晶体结构研究中了解到的结合裂隙的拓扑结构来解释,并提供了有关 gp32 如何在 DNA 复制和其他基因组表达过程的各个步骤中操纵 ssDNA 链的更多见解。