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单分子纳米定位:ATP 水解过程中解旋酶-DNA 复合物的结构转变。

Single-molecule nanopositioning: structural transitions of a helicase-DNA complex during ATP hydrolysis.

机构信息

Physics Department, University of Illinois, Urbana, Illinois, USA.

出版信息

Biophys J. 2011 Aug 17;101(4):976-84. doi: 10.1016/j.bpj.2011.07.010.

DOI:10.1016/j.bpj.2011.07.010
PMID:21843490
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3175085/
Abstract

The conformational states of Escherichia coli Rep helicase undergoing ATP hydrolysis while bound to a partial-duplex DNA (pdDNA) were studied using single-molecule FRET. Crystallographic studies showed that Rep bound to single-stranded DNA can exist in open and closed conformations that differ in the orientation of the 2B subdomain. FRET measurements between eight Rep mutants donor-labeled at different residues and pdDNA acceptor-labeled at the junction were conducted at each of the four nucleotide states. The positions of donor-labeled residues, based on crystal structure, and FRET measurements between these donor molecules and the acceptor fluorophore at the DNA junction were used to predict the most likely position for the DNA junction using a triangulation algorithm. These predicted junction positions are compared with the crystal structure to determine whether the open or closed conformation is more consistent with the FRET data. Our data revealed that there are two distinct Rep-pdDNA conformations in the ATPγS and ADP states, an unexpected finding. The primary conformation is similar to that observed in nucleotide-free and ADP.Pi states, and the secondary conformation is a novel conformation where the duplex DNA and 2B subdomain moved as a unit by 13 Å relative to the rest of the protein. The primary conformation found in all nucleotide states is consistent with the closed conformation of the crystal structure however; the secondary conformation is a new conformation that has not been observed before. We discuss the possible implications of this newly observed conformation.

摘要

使用单分子 FRET 研究了与部分双链 DNA(pdDNA)结合时大肠杆菌 Rep 解旋酶在 ATP 水解过程中的构象状态。晶体学研究表明,与单链 DNA 结合的 Rep 可以存在于开放和闭合构象中,这两种构象在 2B 亚结构域的取向方面有所不同。在四个核苷酸状态下,对在不同残基处进行供体标记的八个 Rep 突变体与在 DNA 连接处进行受体标记的 pdDNA 之间进行了 FRET 测量。根据晶体结构确定供体标记残基的位置,并使用三角测量算法来预测 DNA 连接处这些供体分子与受体荧光团之间的 FRET 测量的最可能位置。将这些预测的连接处位置与晶体结构进行比较,以确定开放或闭合构象与 FRET 数据更一致。我们的数据显示,在 ATPγS 和 ADP 状态下,Rep-pdDNA 存在两种截然不同的构象,这是一个意外的发现。主要构象类似于在无核苷酸和 ADP.Pi 状态下观察到的构象,而次要构象是一种新的构象,其中双螺旋 DNA 和 2B 亚结构域相对于蛋白质的其余部分移动了 13 Å。在所有核苷酸状态下发现的主要构象与晶体结构的闭合构象一致;然而,次要构象是一种以前未观察到的新构象。我们讨论了这种新观察到的构象的可能意义。

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本文引用的文献

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Rotations of the 2B sub-domain of E. coli UvrD helicase/translocase coupled to nucleotide and DNA binding.E. coli UvrD 解旋酶/转位酶 2B 亚结构域与核苷酸和 DNA 结合的偶联旋转。
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2
5'-Single-stranded/duplex DNA junctions are loading sites for E. coli UvrD translocase.5′-单链/双链 DNA 连接点是大肠杆菌 UvrD 转位酶的加载位点。
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