Bogomolni R A, Spudich J L
Cardiovascular Research Institute, University of California, San Francisco 94143.
Biophys J. 1987 Dec;52(6):1071-5. doi: 10.1016/S0006-3495(87)83301-5.
Halobacterium halobium Flx mutants are deficient in bacteriorhodopsin (bR) and halorhodopsin (hR). Such strains are phototactic and the light signal detectors are two additional retinal pigments, sensory rhodopsins I and II (sR-I and sR-II), which absorb maximally at 587 and 480 nm, respectively. A retinal-deficient Flx mutant, Flx5R, overproduces sR-I-opsin and does not show any photochemical activity other than that of sR-I after the pigment is regenerated by addition of all-trans retinal. Using native membrane vesicles from this strain, we have resolved a new photointermediate in the sR-I photocycle between the early bathointermediate S610 and the later intermediate S373. The new form, S560, resembles the L intermediate of bR in its position in the photoreaction cycle, its relatively low extinction, and its moderate blue shift. It forms with a half-time of approximately 90 microseconds at 21 degrees C, concomitant with the decay of S610. Its decay with a half-time of 270 microseconds parallels the appearance of S373. From a data set consisting of laser flash-induced absorbance changes (300 ns, 580-nm excitation) measured at 24 wavelengths from 340 to 720 nm in a time window spanning 1 microsecond to 8 s we have calculated the spectra of the photocycle intermediates assuming a unidirectional, unbranched reaction scheme.
嗜盐菌(Halobacterium halobium)Flx突变体缺乏细菌视紫红质(bR)和嗜盐视紫红质(hR)。这类菌株具有趋光性,光信号探测器是另外两种视网膜色素,即感官视紫红质I和II(sR-I和sR-II),它们分别在587和480nm处有最大吸收峰。一种缺乏视网膜的Flx突变体Flx5R过量产生sR-I视蛋白,在添加全反式视网膜使色素再生后,除了sR-I的光化学活性外,不显示任何其他光化学活性。利用该菌株的天然膜囊泡,我们在sR-I光循环中,于早期的嗜盐菌视紫红质中间体S610和后期中间体S373之间解析出一种新的光中间体。新形式S560在光反应循环中的位置、相对较低的消光值和适度的蓝移方面类似于bR的L中间体。它在21℃下以约90微秒的半衰期形成,与S610的衰减同时发生。其以270微秒半衰期的衰减与S373的出现平行。在一个从1微秒到8秒的时间窗口内,在340至720nm的24个波长处测量了由激光闪光诱导的吸光度变化(300ns,580nm激发)组成的数据集,我们假设一个单向、无分支的反应方案,计算了光循环中间体的光谱。