Yamada H, Matsuyama S, Tokuda H, Mizushima S
Laboratory of Microbiology, School of Agriculture, Nagoya University, Japan.
J Biol Chem. 1989 Nov 5;264(31):18577-81.
The in vitro translocation of OmpF-Lpp, a model secretory protein, into inverted membrane vesicles of Escherichia coli obligatorily requires the proton motive force (delta mu H+) in the conventional assay system (Yamada, H., Tokuda, H., and Mizushima, S. (1989) J. Biol. Chem. 264, 1723-1728). The translocation, however, took place efficiently, even in the absence of delta mu H+, when the system was supplemented with additional SecA. With the stripped membrane vesicles, which are permeable to protons, or in the absence of NADH, the supplementation of SecA remarkably stimulated the translocation activity. The further addition of NADH did not significantly enhance the translocation activity under the SecA-enriched conditions. OmpF-Lpp thus translocated could be recovered from the vesicular lumen by sonication, indicating that complete translocation occurred in the absence of delta mu H+. It is suggested that delta mu H+ is required for high affinity interaction of SecA with the presumed secretory machinery in the cytoplasmic membrane and that a high concentration of SecA modulates the delta mu H+ requirement.
在传统检测系统中,模型分泌蛋白OmpF-Lpp向大肠杆菌内翻膜囊泡的体外转运必然需要质子动力(ΔμH⁺)(山田,H.,德田,H.,和水岛,S.(1989年)《生物化学杂志》264,1723 - 1728)。然而,当系统补充额外的SecA时,即使没有ΔμH⁺,转运也能高效发生。对于对质子通透的剥离膜囊泡,或者在没有NADH的情况下,SecA的补充显著刺激了转运活性。在富含SecA的条件下,进一步添加NADH并没有显著增强转运活性。如此转运的OmpF-Lpp可通过超声处理从囊泡腔中回收,这表明在没有ΔμH⁺的情况下发生了完全转运。有人提出,ΔμH⁺是SecA与细胞质膜中假定的分泌机制进行高亲和力相互作用所必需的,并且高浓度的SecA可调节对ΔμH⁺的需求。