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首页> 外文期刊>Nucleic Acids Research >A prominent beta-hairpin structure in the winged-helix domain of RECQ1 is required for DNA unwinding and oligomer formation
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A prominent beta-hairpin structure in the winged-helix domain of RECQ1 is required for DNA unwinding and oligomer formation

机译:RECQ1 的翼螺旋结构域中突出的 β-发夹结构是 DNA 解旋和寡聚体形成所必需的

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摘要

RecQ helicases have attracted considerable interest in recent years due to their role in the suppression of genome instability and human diseases. These atypical helicases exert their function by resolving a number of highly specific DNA structures. The crystal structure of a truncated catalytic core of the human RECQ1 helicase (RECQ1(49-616)) shows a prominent beta-hairpin, with an aromatic residue (Y564) at the tip, located in the C-terminal winged-helix domain. Here, we show that the beta-hairpin is required for the DNA unwinding and Holliday junction (HJ) resolution activity of full-length RECQ1, confirming that it represents an important determinant for the distinct substrate specificity of the five human RecQ helicases. In addition, we found that the beta-hairpin is required for dimer formation in RECQ1(49-616) and tetramer formation in full-length RECQ1. We confirmed the presence of stable RECQ1(49-616) dimers in solution and demonstrated that dimer formation favours DNA unwinding; even though RECQ1 monomers are still active. Tetramers are instead necessary for more specialized activities such as HJ resolution and strand annealing. Interestingly, two independent protein-protein contacts are required for tetramer formation, one involves the beta-hairpin and the other the N-terminus of RECQ1, suggesting a non-hierarchical mechanism of tetramer assembly.
机译:近年来,RecQ解旋酶因其在抑制基因组不稳定性和人类疾病中的作用而引起了人们的极大兴趣。这些非典型解旋酶通过解析许多高度特异性的DNA结构来发挥其功能。人 RECQ1 解旋酶 (RECQ1(49-616)) 截短催化核心的晶体结构显示一个突出的 β-发夹,尖端有芳香族残基 (Y564),位于 C 末端有翼螺旋结构域。在这里,我们表明 β-发夹是全长 RECQ1 的 DNA 展开和 Holliday 连接 (HJ) 分离活性所必需的,证实它代表了五种人 RecQ 解旋酶的不同底物特异性的重要决定因素。此外,我们发现 β-发夹是 RECQ1 (49-616) 二聚体形成和全长 RECQ1 四聚体形成所必需的。我们证实了溶液中存在稳定的 RECQ1(49-616) 二聚体,并证明二聚体的形成有利于 DNA 的解旋;即使 RECQ1 单体仍然具有活性。相反,四聚体对于更专业的活动(如HJ分离和链退火)是必需的。有趣的是,四聚体的形成需要两个独立的蛋白质-蛋白质接触,一个涉及 β-发夹,另一个涉及 RECQ1 的 N 末端,这表明四聚体组装的非分层机制。

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