Sineshchekov V A, Balashov S P, Litvin F F
Biofizika. 1981 Nov-Dec;26(6):964-72.
Fluorescence characteristics of all-trans-bacteriorhodopsin (BR570), 13-cis-BR (BR560), and the intermediate of the BR cycle (P585) are obtained by measuring variable fluorescence in the course of their phototransformations. The fluorescence spectra (lambda greater than 580 nm) have a maximum at 720, 730 and 740 nm, their respective excitation spectra with a maximum of 578, 565 and 585 nm coincide with the absorption spectra of the three states. The emission quantum yield for P585 is approximately 10(-4) at -62 degrees C and 4 +/- 2 10(-4) for BR560 at -196 degrees C. The effect of sharp increase of BR570 fluorescence quantum yield (from less than or equal to 10(-4) to approximately 10(-3)) under action of light at -196 degrees C (photoactivation or induction of emission) is found which points to the existence of photoprocess parallel to the photoconversion of BR570 into P600 (formula: see text). The emission of BR560 is not photoactivated. The photoactivated state BR570 is not identical with pseudo-BR of Gillbro et al., (1977) which has a maximum in the excitation spectrum at 597 nm. The greater part of the red fluorescence of the membrane belongs to the minor nonphotoactive forms of BR (B578, B630) with relatively high fluorescence yield (greater than or equal to 10(-2) at -196 degrees C). The fluorescence characteristics of BR are discussed in the framework of a scheme in which the existence of an intermediate excited level common for the emission and photoconversion and a ground level common for the initial state and photoproduct is suggested.
通过测量全反式细菌视紫红质(BR570)、13-顺式BR(BR560)以及BR循环中间体(P585)光转化过程中的可变荧光,获得了它们的荧光特性。荧光光谱(λ大于580nm)在720、730和740nm处有最大值,其各自的激发光谱最大值分别为578、565和585nm,与这三种状态的吸收光谱一致。在-62℃时,P585的发射量子产率约为10^(-4),在-196℃时,BR560的发射量子产率为4±2×10^(-4)。发现在-196℃光照作用下,BR570荧光量子产率急剧增加(从小于或等于10^(-4)增至约10^(-3))(光激活或发射诱导),这表明存在与BR570向P600光转化平行的光过程(公式:见原文)。BR560的发射不能被光激活。光激活态的BR570与吉尔布罗等人(1977年)的假BR不同,后者的激发光谱最大值在597nm处。膜的大部分红色荧光属于BR的少量非光活性形式(B578、B630),其荧光产率相对较高(在-196℃时大于或等于10^(-2))。在一个方案框架内讨论了BR的荧光特性,该方案提出存在发射和光转化共有的中间激发态以及初始态和光产物共有的基态。