Vindigni Alessandro, Hickson Ian D
HFSP J. 2009 Jun;3(3):153-64. doi: 10.2976/1.3079540. Epub 2009 Mar 18.
Approximately 1% of the open reading frames in the human genome encode proteins that function as DNA or RNA helicases. These enzymes act in all aspects of nucleic acid metabolism where the complementary strands of DNA:DNA or DNA:RNA duplexes require to be transiently opened. However, they perform wider roles in nucleic acid metabolism due to their ability to couple the energy derived from hydrolysis of ATP to their unidirectional translocation along strands of DNARNA. In this way, helicases can displace proteins from DNARNA, drive the migration of DNA junctions (such as the Holliday junction recombination intermediate), or generate superhelical tension in nucleic acid duplexes. Here, we review a subgroup of DNA helicase enzymes, the RecQ family, that has attracted considerable interest in recent years due to their role not only in suppression of genome instability, but also in the avoidance of human disease. We focus particularly on the protein structural motifs and the multiple assembly states that characterize RecQ helicases and discuss novel biophysical techniques to study the different RecQ structures present in solution. We also speculate on the roles of the different domains and oligomeric forms in defining which DNA structures will represent substrates for RecQ helicase-mediated transactions.
人类基因组中约1%的开放阅读框编码的蛋白质具有DNA或RNA解旋酶的功能。这些酶在核酸代谢的各个方面发挥作用,在这些过程中,DNA:DNA或DNA:RNA双链体的互补链需要暂时解开。然而,由于它们能够将ATP水解产生的能量与沿DNA/RNA链的单向易位相耦合,它们在核酸代谢中发挥着更广泛的作用。通过这种方式,解旋酶可以将蛋白质从DNA/RNA上置换下来,推动DNA连接点(如霍利迪连接体重组中间体)的迁移,或在核酸双链体中产生超螺旋张力。在这里,我们综述了DNA解旋酶家族的一个亚组——RecQ家族,近年来,该家族不仅因其在抑制基因组不稳定方面的作用,还因其在预防人类疾病方面的作用而备受关注。我们特别关注RecQ解旋酶特有的蛋白质结构基序和多种组装状态,并讨论研究溶液中存在的不同RecQ结构的新型生物物理技术。我们还推测了不同结构域和寡聚形式在确定哪些DNA结构将成为RecQ解旋酶介导的反应底物方面的作用。