Yang Shixin, Yu Xiong, VanLoock Margaret S, Jezewska Maria J, Bujalowski Wlodzimierz, Egelman Edward H
Department of Biochemistry and Molecular Genetics, University of Virginia Health Sciences Center, Jordan Hall, Box 800773, Charlottesville 22908-0733, USA.
J Mol Biol. 2002 Aug 30;321(5):839-49. doi: 10.1016/s0022-2836(02)00711-8.
DnaB is the primary replicative helicase in Escherichia coli and the hexameric DnaB ring has previously been shown to exist in two states in the presence of nucleotides. In one, all subunits are equivalent, while in the other, there are two different subunit conformations resulting in a trimer of dimers. Under all conditions that we have used for electron microscopy, including the absence of nucleotide, some rings exist as trimers of dimers, showing that the symmetry of the DnaB hexamer can be broken prior to nucleotide binding. Three-dimensional reconstructions reveal that the N-terminal domain of DnaB makes two very different contacts with neighboring subunits in the trimer of dimers, but does not form a predicted dimer with a neighboring N-terminal domain. Within the trimer of dimers, the helicase domain exists in two alternate conformations, each of which can form symmetrical hexamers depending upon the nucleotide cofactor used. These results provide new information about the modular architecture and domain dynamics of helicases, and suggest, by comparison with the hexameric bacteriophage T7 gp4 and SV40 large T-antigen helicases, that a great structural and mechanistic diversity may exist among the hexameric helicases.
DnaB是大肠杆菌中的主要复制解旋酶,先前已证明六聚体DnaB环在有核苷酸存在的情况下以两种状态存在。在一种状态下,所有亚基都是等同的,而在另一种状态下,存在两种不同的亚基构象,形成二聚体的三聚体。在我们用于电子显微镜观察的所有条件下,包括不存在核苷酸的情况,一些环以二聚体的三聚体形式存在,这表明DnaB六聚体的对称性在核苷酸结合之前就可以被打破。三维重建显示,DnaB的N端结构域在二聚体的三聚体中与相邻亚基有两种非常不同的接触方式,但不会与相邻的N端结构域形成预测的二聚体。在二聚体的三聚体内,解旋酶结构域存在两种交替构象,每种构象都可以根据所使用的核苷酸辅因子形成对称的六聚体。这些结果提供了关于解旋酶的模块化结构和结构域动力学的新信息,并通过与六聚体噬菌体T7 gp4和SV40大T抗原解旋酶的比较表明,六聚体解旋酶之间可能存在很大的结构和机制多样性。