Zhou Jiahai, Xu Zhaohui
Department of Biological Chemistry and Life Sciences Institute, University of Michigan Medical School, Ann Arbor 48109-0606, USA.
Nat Struct Biol. 2003 Nov;10(11):942-7. doi: 10.1038/nsb980. Epub 2003 Sep 28.
SecB is a bacterial chaperone involved in directing pre-protein to the translocation pathway by its specific interaction with the peripheral membrane ATPase SecA. The SecB-binding site on SecA is located at its C terminus and consists of a stretch of highly conserved residues. The crystal structure of SecB in complex with the C-terminal 27 amino acids of SecA from Haemophilus influenzae shows that the SecA peptide is structured as a CCCH zinc-binding motif. One SecB tetramer is bound by two SecA peptides, and the interface involves primarily salt bridges and hydrogen bonding interactions. The structure explains the importance of the zinc-binding motif and conserved residues at the C terminus of SecA in its high-affinity binding with SecB. It also suggests a model of SecB-SecA interaction and its implication for the mechanism of pre-protein transfer in bacterial protein translocation.
SecB是一种细菌伴侣蛋白,它通过与外周膜ATP酶SecA的特异性相互作用,将前体蛋白导向转运途径。SecA上的SecB结合位点位于其C末端,由一段高度保守的残基组成。与来自流感嗜血杆菌的SecA的C末端27个氨基酸形成复合物的SecB的晶体结构表明,SecA肽被构建为一个CCCH锌结合基序。一个SecB四聚体与两个SecA肽结合,界面主要涉及盐桥和氢键相互作用。该结构解释了SecA C末端的锌结合基序和保守残基在其与SecB高亲和力结合中的重要性。它还提出了一个SecB-SecA相互作用模型及其对细菌蛋白质转运中前体蛋白转移机制的影响。