Northall Sarah J, Buckley Ryan, Jones Nathan, Penedo J Carlos, Soultanas Panos, Bolt Edward L
The University of Nottingham, UK; School of Life Sciences, UK; School of Chemistry, UK.
The University of Nottingham, UK; School of Life Sciences, UK.
DNA Repair (Amst). 2017 Sep;57:125-132. doi: 10.1016/j.dnarep.2017.07.005. Epub 2017 Jul 16.
Hel308 helicases promote genome stability linked to DNA replication in archaea, and have homologues in metazoans. In the crystal structure of archaeal Hel308 bound to a tailed DNA duplex, core helicase domains encircle single-stranded DNA (ssDNA) in a "ratchet" for directional translocation. A winged helix domain (WHD) is also present, but its function is mysterious. We investigated the WHD in full-length Hel308, identifying that mutations in a solvent exposed α-helix resulted in reduced DNA binding and unwinding activities. When isolated from the rest of Hel308, the WHD protein alone bound to duplex DNA but not ssDNA, and DNA binding by WHD protein was abolished by the same mutations as were analyzed in full-length Hel308. Isolated WHD from a human Hel308 homologue (HelQ) also bound to duplex DNA. By disrupting the interface between the Hel308 WHD and a RecA-like domain, a topology typical of Ski2 helicases, we show that this is crucial for ATPase and helicase activities. The data suggest a model in which the WHD promotes activity of Hel308 directly, through binding to duplex DNA that is distinct from ssDNA binding by core helicase, and indirectly through interaction with the RecA-like domain. We propose how the WHD may contribute to ssDNA translocation, resulting in DNA helicase activity or in removal of other DNA bound proteins by "reeling" ssDNA.
Hel308解旋酶促进古菌中与DNA复制相关的基因组稳定性,并且在后生动物中存在同源物。在与带尾DNA双链体结合的古菌Hel308的晶体结构中,核心解旋酶结构域以“棘轮”形式环绕单链DNA(ssDNA)进行定向转运。还存在一个翼状螺旋结构域(WHD),但其功能尚不清楚。我们研究了全长Hel308中的WHD,发现溶剂暴露的α-螺旋中的突变导致DNA结合和解旋活性降低。当从Hel308的其余部分分离出来时,单独的WHD蛋白与双链DNA结合,但不与ssDNA结合,并且WHD蛋白的DNA结合被与全长Hel308中分析的相同突变所消除。从人类Hel308同源物(HelQ)中分离出的WHD也与双链DNA结合。通过破坏Hel308 WHD与RecA样结构域之间的界面(Ski2解旋酶的典型拓扑结构),我们表明这对ATP酶和解旋酶活性至关重要。数据表明了一种模型,其中WHD通过与不同于核心解旋酶结合的ssDNA的双链DNA结合直接促进Hel308的活性,并通过与RecA样结构域的相互作用间接促进其活性。我们提出了WHD可能如何促进ssDNA转运,从而导致DNA解旋酶活性或通过“卷动”ssDNA去除其他与DNA结合的蛋白质。