Structural Biology Laboratory, Elettra-Sincrotrone Trieste SCpA, Area Science Park, Basovizza, Trieste, Italy.
Biophys Chem. 2013 Jul-Aug;177-178:34-9. doi: 10.1016/j.bpc.2013.02.009. Epub 2013 Mar 20.
RecQ helicases play essential roles in the maintenance of genome stability and contain a highly conserved helicase region generally followed by a characteristic RecQ-C-terminal (RQC) domain, plus a number of variable associated domains. Notable exceptions are the RecQ4 helicases, where none of these additional regions have been described. Particularly striking was the fact that no RQC domain had been reported, considering that the RQC domain had been shown to play an essential role in the catalytic mechanism of most RecQ family members. Here we present the results of detailed bioinformatic analyses of RecQ4 proteins that identify, for the first time, the presence of a putative RQC domain, including some of the key residues involved in DNA binding and unwinding. We also describe the presence of a novel "Zn knuckle" domain, as well as an additional Sld2-homology region, providing new insights into the architecture, function and evolution of these enzymes.
RecQ 解旋酶在维持基因组稳定性方面发挥着重要作用,它们通常包含一个高度保守的解旋酶区域,后面跟着一个特征性的 RecQ-C 端(RQC)结构域,以及许多可变的相关结构域。值得注意的例外是 RecQ4 解旋酶,其中没有描述这些额外的区域。特别引人注目的是,考虑到 RQC 结构域在大多数 RecQ 家族成员的催化机制中发挥着重要作用,但尚未报道其存在 RQC 结构域。在这里,我们首次通过详细的生物信息学分析 RecQ4 蛋白的结果,确定了存在一个假定的 RQC 结构域,包括一些参与 DNA 结合和解旋的关键残基。我们还描述了一个新的“Zn 指”结构域的存在,以及一个额外的 Sld2 同源区域,为这些酶的结构、功能和进化提供了新的见解。