Luisi B F, Lanyi J K, Weber H J
FEBS Lett. 1980 Aug 11;117(1):354-8. doi: 10.1016/0014-5793(80)80979-3.
Using H. halobium cell envelope vesicles containing either bacteriorhodopsin plus Na+ pump, bacteriorhodopsin alone, Na+ pump alone, or no light-responsive pigment altogether, it could be shown that the large majority of light energized Na+ extrusion in these mutants is linked to bacteriorhodopsin and to protonmotive force, and therefore must be facilitated by a Na+/H+ antiporter. Thus, the recently discovered primary Na+ pump makes only a minor contribution to light-mediated Na+ flux. The activity of the Na+/H+ antiporter appears to be independent of the presence of any photoreactive pigments, since an artifical electron donor will drive rapid Na+ extrusion in all of the vesicle preparations tested.
利用含有细菌视紫红质加钠离子泵、单独的细菌视紫红质、单独的钠离子泵或完全没有光响应色素的嗜盐菌细胞包膜囊泡,结果表明,这些突变体中绝大多数由光驱动的钠离子外流与细菌视紫红质和质子动力相关,因此必然由钠离子/氢离子反向转运体介导。因此,最近发现的初级钠离子泵对光介导的钠离子通量贡献很小。钠离子/氢离子反向转运体的活性似乎与任何光反应色素的存在无关,因为人工电子供体可在所有测试的囊泡制剂中驱动快速的钠离子外流。