Suo Yuying, Hardy Simon J S, Randall Linda L
Department of Biochemistry, University of Missouri, Columbia, MO 65211, USA.
Department of Biology, University of York, York YO10 5DD, UK.
J Mol Biol. 2015 Feb 27;427(4):887-900. doi: 10.1016/j.jmb.2014.12.008. Epub 2014 Dec 19.
During export in Escherichia coli, SecB, a homotetramer structurally organized as a dimer of dimers, forms a complex with two protomers of SecA, which is the ATPase that provides energy to transfer a precursor polypeptide through the membrane via the SecYEG translocon. There are two areas of contact on SecB that stabilize the SecA:SecB complex: the flat sides of the SecB tetramer and the C-terminal 13 residues of SecB. These contacts within the complex are distributed asymmetrically. Breaking contact between SecA and the sides of SecB results in release of only one protomer of SecA yielding a complex of stoichiometry SecA1:SecB4. This complex mediates export; however, the coupling of ATP hydrolysis to movements of the precursor through the translocon is much less efficient than the coupling by the SecA2:SecB4 complex. Here we used heterotetrameric species of SecB to understand the source of the asymmetry in the contacts and its role in the functioning of the complex. The model of interactions presented suggests a way that binding between SecA and SecB might decrease the affinity of precursor polypeptides for SecB and facilitate the transfer to SecA.
在大肠杆菌的输出过程中,SecB是一种以二聚体的二聚体形式结构组织的同四聚体,它与SecA的两个原体形成复合物,SecA是一种ATP酶,为通过SecYEG转运体将前体多肽转运穿过膜提供能量。SecB上有两个稳定SecA:SecB复合物的接触区域:SecB四聚体的平面侧和SecB的C端13个残基。复合物内的这些接触不对称分布。破坏SecA与SecB侧面之间的接触只会导致一个SecA原体释放,产生化学计量比为SecA1:SecB4的复合物。这种复合物介导输出;然而,ATP水解与前体通过转运体的运动之间的偶联效率远低于SecA2:SecB4复合物的偶联效率。在这里,我们使用SecB的异源四聚体物种来了解接触不对称的来源及其在复合物功能中的作用。所提出的相互作用模型表明了一种SecA与SecB之间的结合可能降低前体多肽对SecB的亲和力并促进向SecA转移的方式。