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枯草芽孢杆菌SecA的X射线结构揭示的新型二聚体界面和构象变化。

A novel dimer interface and conformational changes revealed by an X-ray structure of B. subtilis SecA.

作者信息

Zimmer Jochen, Li Weikai, Rapoport Tom A

机构信息

Howard Hughes Medical Institute and Department of Cell Biology, Harvard Medical School, 250 Longwood Avenue, Boston, MA 02115, USA.

出版信息

J Mol Biol. 2006 Dec 1;364(3):259-65. doi: 10.1016/j.jmb.2006.08.044. Epub 2006 Aug 22.

Abstract

The SecA ATPase moves polypeptides post-translationally across the plasma membrane of eubacteria, but the mechanism of transport is still unclear. We describe the crystal structure of a novel dimeric form of Bacillus subtilis SecA. Dimerization of SecA occurs at the prominent groove formed by the nucleotide binding domain 2 (nbd2) and the preprotein cross-linking (ppx) domain. The dimer interface is very large, burying approximately 5400 A(2) of solvent accessible surface per monomer. Single cysteine disulfide cross-linking shows the presence of this novel SecA dimer in solution. In addition, other dimers also exist in solution, arguing that they all are in equilibrium with monomeric SecA and supporting the idea that the monomer may be the functional species. Dimerization of SecA causes an alpha-helix of one subunit to convert to a short beta-strand that participates in beta-sheet formation with strands in the other subunit. This conversion of secondary structure elements occurs close to the connection between the nbd1 and ppx domains, a potential site of interaction with translocation substrate. Comparing the different X-ray structures of B. subtilis SecA suggests that small changes in the nucleotide binding domains could be amplified via helix 1 of the helical scaffold domain (hsd) to generate larger movements of the domains involved in polypeptide binding.

摘要

SecA ATP酶在翻译后将多肽转运穿过真细菌的质膜,但转运机制仍不清楚。我们描述了枯草芽孢杆菌SecA一种新型二聚体形式的晶体结构。SecA的二聚化发生在由核苷酸结合结构域2(nbd2)和前体蛋白交联(ppx)结构域形成的突出凹槽处。二聚体界面非常大,每个单体掩埋约5400 Ų的溶剂可及表面。单半胱氨酸二硫键交联表明溶液中存在这种新型SecA二聚体。此外,溶液中还存在其他二聚体,这表明它们都与单体SecA处于平衡状态,支持单体可能是功能形式的观点。SecA的二聚化导致一个亚基的α螺旋转变为短β链,该短β链与另一个亚基的链参与β折叠形成。二级结构元件的这种转变发生在靠近nbd1和ppx结构域之间的连接处,这是与转运底物相互作用的潜在位点。比较枯草芽孢杆菌SecA的不同X射线结构表明,核苷酸结合结构域的小变化可通过螺旋支架结构域(hsd)的螺旋1放大,从而使参与多肽结合的结构域产生更大的移动。

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