Musial-Siwek Monika, Rusch Sharyn L, Kendall Debra A
Department of Molecular and Cell Biology, 91 North Eagleville Road, University of Connecticut, Storrs, CT 06269-3125, USA.
J Mol Biol. 2007 Jan 19;365(3):637-48. doi: 10.1016/j.jmb.2006.10.027. Epub 2006 Nov 3.
SecA, an ATPase crucial to the Sec-dependent translocation machinery in Escherichia coli, recognizes and directly binds the N-terminal signal peptide of an exported preprotein. This interaction plays a central role in the targeting and transport of preproteins via the SecYEG channel. Here we identify the signal peptide binding groove (SPBG) on SecA addressing a key issue regarding the SecA-preprotein interaction. We employ a synthetic signal peptide containing the photoreactive benzoylphenylalanine to efficiently and specifically label SecA containing a unique Factor Xa site. Comparison of the photolabeled fragment from the subsequent proteolysis of several SecAs, which vary only in the location of the Factor Xa site, reveals one 53 residue segment in common with the entire series. The covalently modified SecA segment produced is the same in aqueous solution and in lipid vesicles. This spans amino acid residues 269 to 322 of the E. coli protein, which is distinct from a previously proposed signal peptide binding site, and contributes to a hydrophobic peptide binding groove evident in molecular models of SecA.
SecA是一种对大肠杆菌中Sec依赖性转运机制至关重要的ATP酶,它识别并直接结合输出前体蛋白的N端信号肽。这种相互作用在通过SecYEG通道对前体蛋白进行靶向和转运中起着核心作用。在此,我们确定了SecA上的信号肽结合槽(SPBG),解决了一个关于SecA与前体蛋白相互作用的关键问题。我们使用一种含有光反应性苯甲酰苯丙氨酸的合成信号肽,以有效且特异性地标记含有独特因子Xa位点的SecA。对几种仅在因子Xa位点位置不同的SecA进行后续蛋白酶解得到的光标记片段进行比较,发现整个系列中有一个53个残基的共同片段。所产生的共价修饰的SecA片段在水溶液和脂质囊泡中是相同的。这跨越了大肠杆菌蛋白的269至322位氨基酸残基,与先前提出的信号肽结合位点不同,并且在SecA的分子模型中形成了一个明显的疏水肽结合槽。