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向前解旋并向后滑动:BLM解旋酶的一种间歇性解旋模式。

Unwinding forward and sliding back: an intermittent unwinding mode of the BLM helicase.

作者信息

Wang Shuang, Qin Wei, Li Jing-Hua, Lu Ying, Lu Ke-Yu, Nong Da-Guan, Dou Shuo-Xing, Xu Chun-Hua, Xi Xu-Guang, Li Ming

机构信息

Beijing National Laboratory for Condensed Matter Physics and CAS Key Laboratory of Soft Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China.

College of Life Science and Technology, Northwest A & F University, Yangling, Shaanxi 712100, China.

出版信息

Nucleic Acids Res. 2015 Apr 20;43(7):3736-46. doi: 10.1093/nar/gkv209. Epub 2015 Mar 12.

Abstract

There are lines of evidence that the Bloom syndrome helicase, BLM, catalyzes regression of stalled replication forks and disrupts displacement loops (D-loops) formed during homologous recombination (HR). Here we constructed a forked DNA with a 3' single-stranded gap and a 5' double-stranded handle to partly mimic a stalled DNA fork and used magnetic tweezers to study BLM-catalyzed unwinding of the forked DNA. We have directly observed that the BLM helicase may slide on the opposite strand for some distance after duplex unwinding at different forces. For DNA construct with a long hairpin, progressive unwinding of the hairpin is frequently interrupted by strand switching and backward sliding of the enzyme. Quantitative study of the uninterrupted unwinding length (time) has revealed a two-state-transition mechanism for strand-switching during the unwinding process. Mutational studies revealed that the RQC domain plays an important role in stabilizing the helicase/DNA interaction during both DNA unwinding and backward sliding of BLM. Especially, Lys1125 in the RQC domain, a highly conserved amino acid among RecQ helicases, may be involved in the backward sliding activity. We have also directly observed the in vitro pathway that BLM disrupts the mimic stalled replication fork. These results may shed new light on the mechanisms for BLM in DNA repair and homologous recombination.

摘要

有证据表明,布卢姆综合征解旋酶BLM催化停滞复制叉的回归,并破坏同源重组(HR)过程中形成的置换环(D环)。在这里,我们构建了一个带有3'单链缺口和5'双链柄的叉状DNA,以部分模拟停滞的DNA叉,并使用磁镊研究BLM催化的叉状DNA解旋。我们直接观察到,在不同力作用下双链解旋后,BLM解旋酶可能会在相反链上滑动一段距离。对于带有长发夹的DNA构建体,发夹的逐步解旋经常被酶的链切换和向后滑动打断。对不间断解旋长度(时间)的定量研究揭示了解旋过程中链切换的双态转变机制。突变研究表明,RQC结构域在BLM的DNA解旋和向后滑动过程中,对稳定解旋酶/DNA相互作用起着重要作用。特别是,RQC结构域中的赖氨酸1125(RecQ解旋酶中高度保守的氨基酸)可能参与向后滑动活性。我们还直接观察到了BLM破坏模拟停滞复制叉的体外途径。这些结果可能为BLM在DNA修复和同源重组中的机制提供新的线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2fb/4402530/a7ea065af00f/gkv209fig1.jpg

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