Department of Molecular and Cell Biology, California Institute for Quantitative Biosciences, University of California, Berkeley, Berkeley, CA 94720, USA.
Cell. 2013 Apr 11;153(2):438-48. doi: 10.1016/j.cell.2013.03.006. Epub 2013 Apr 4.
Dedicated AAA+ ATPases deposit hexameric ring-shaped helicases onto DNA to promote replication in cellular organisms. To understand how loading occurs, we used electron microscopy and small angle X-ray scattering (SAXS) to determine the ATP-bound structure of the intact E. coli DnaB⋅DnaC helicase/loader complex. The 480 kDa dodecamer forms a three-tiered assembly, in which DnaC adopts a spiral configuration that remodels N-terminal scaffolding and C-terminal motor regions of DnaB to produce a clear break in the helicase ring. Surprisingly, DnaC's AAA+ fold is dispensable for ring remodeling because the DnaC isolated helicase-binding domain can both load DnaB onto DNA and increase the efficiency by which the helicase acts on substrates in vitro. Our data demonstrate that DnaC opens DnaB by a mechanism akin to that of polymerase clamp loaders and indicate that bacterial replicative helicases, like their eukaryotic counterparts, possess autoregulatory elements that influence how hexameric motor domains are loaded onto and unwind DNA.
在细胞生物中,专一的 AAA+ ATP 酶将六聚体环状解旋酶沉积到 DNA 上以促进复制。为了理解加载过程是如何发生的,我们使用电子显微镜和小角度 X 射线散射(SAXS)来确定完整的大肠杆菌 DnaB⋅DnaC 解旋酶/加载器复合物结合 ATP 的结构。480 kDa 的十二聚体形成一个三层组装体,其中 DnaC 采用螺旋构象,重塑 DnaB 的 N 端支架和 C 端马达区域,从而在解旋酶环上产生明显的断裂。令人惊讶的是,DnaC 的 AAA+ 折叠对于环重塑是可有可无的,因为 DnaC 分离的解旋酶结合结构域既能将 DnaB 加载到 DNA 上,又能提高该酶在体外作用于底物的效率。我们的数据表明,DnaC 通过类似于聚合酶夹加载器的机制打开 DnaB,并表明细菌复制解旋酶与真核生物的解旋酶类似,具有影响六聚体马达域如何加载和解旋 DNA 的自身调节元件。