Department of Biology, University of North Carolina, Chapel Hill, North Carolina 27599, USA.
J Biol Chem. 2012 Mar 9;287(11):8126-34. doi: 10.1074/jbc.M111.314047. Epub 2012 Jan 20.
The Escherichia coli UvrD helicase is known to function in the mismatch repair and nucleotide excision repair pathways and has also been suggested to have roles in recombination and replication restart. The primary intermediate DNA structure in these two processes is the Holliday junction. UvrD has been shown to unwind a variety of substrates including partial duplex DNA, nicked DNA, forked DNA structures, blunt duplex DNA and RNA-DNA hybrids. Here, we demonstrate that UvrD also catalyzes the robust unwinding of Holliday junction substrates. To characterize this unwinding reaction we have employed steady-state helicase assays, pre-steady-state rapid quench helicase assays, DNaseI footprinting, and electron microscopy. We conclude that UvrD binds initially to the junction compared with binding one of the blunt ends of the four-way junction to initiate unwinding and resolves the synthetic substrate into two double-stranded fork structures. We suggest that UvrD, along with its mismatch repair partners, MutS and MutL, may utilize its ability to unwind Holliday junctions directly in the prevention of homeologous recombination. UvrD may also be involved in the resolution of stalled replication forks by unwinding the Holliday junction intermediate to allow bypass of the blockage.
大肠杆菌 UvrD 解旋酶已知在碱基错配修复和核苷酸切除修复途径中发挥作用,也被认为在重组和复制起始中具有作用。这两个过程中的主要中间 DNA 结构是 Holliday 连接。已经表明 UvrD 可以解开多种底物,包括部分双链 DNA、切口 DNA、分叉 DNA 结构、钝端双链 DNA 和 RNA-DNA 杂交体。在这里,我们证明 UvrD 还可以催化 Holliday 连接底物的有力解旋。为了表征这种解旋反应,我们采用了稳态解旋酶测定、预稳态快速淬火解旋酶测定、DNaseI 足迹分析和电子显微镜。我们得出结论,与结合四联体连接的钝端之一以起始解旋相比,UvrD 最初结合到连接点,将合成底物解析为两个双链叉结构。我们认为,UvrD 与其碱基错配修复伙伴 MutS 和 MutL 一起,可能利用其解开 Holliday 连接的能力直接防止同源重组。UvrD 也可能通过解开 Holliday 连接中间体来参与停滞复制叉的解决,以允许绕过阻塞。