Drachev L A, Kaulen A D
A.N. Belozersky Institute of Physico-Chemical Biology, Moscow State University, Russia.
FEBS Lett. 1992 Nov 30;313(3):248-50. doi: 10.1016/0014-5793(92)81202-w.
The photocycles of the wild-type bacteriorhodopsin and the D96N mutant were investigated by the flash-photolysis technique. The M-intermediate formation (400 nm) and the L-intermediate decay (520 nm) were found to be well described by a sum of two exponents (time constants, tau 1 = 65 and tau 2 = 250 microseconds) for the wild-type bR and three exponents (tau 1 = 55 microseconds, tau 2 = 220 microseconds and tau 3 = 1 ms) for the D96N mutant of bR. A component with tau = 1 ms was found to be present in the photocycle of the wild-type bacteriorhodopsin as a lag-phase in the relaxation of photoresponses at 400 and 520 nm. In the presence of Lu3+ ions or 80% glycerol this component was clearly seen as an additional phase of M-formation. The azide effect on the D96N mutant of bR suggests that the 1-ms component is associated with an irreversible conformational change switching the Schiff base from the outward to the inward proton channel. The maximum of the difference spectrum of the 1-ms component of D96N bR is located at 404 nm as compared to 412 nm for the first two components. We suggest that this effect is a result of the alteration of the inward proton channel due to the Asp96-->Asn substitution. Proton release measured with pyranine in the absence of pH buffers was identical for the wild-type bR and D96N mutant and matched the M-->M' conformational transition. A model for M rise in the bR photocycle is proposed.
通过闪光光解技术研究了野生型细菌视紫红质和D96N突变体的光循环。对于野生型细菌视紫红质,M中间体形成(400 nm)和L中间体衰减(520 nm)可以很好地用两个指数之和(时间常数,τ1 = 65微秒,τ2 = 250微秒)来描述;对于细菌视紫红质的D96N突变体,则用三个指数(τ1 = 55微秒,τ2 = 220微秒,τ3 = 1毫秒)来描述。发现野生型细菌视紫红质的光循环中存在一个时间常数为1毫秒的成分,它是400和520 nm处光响应弛豫中的一个滞后阶段。在Lu3+离子或80%甘油存在的情况下,这个成分明显表现为M形成的一个额外阶段。叠氮化物对细菌视紫红质D96N突变体的影响表明,1毫秒成分与席夫碱从外向质子通道向内向质子通道切换的不可逆构象变化有关。D96N细菌视紫红质1毫秒成分的差光谱最大值位于404 nm,而前两个成分位于412 nm。我们认为这种效应是由于Asp96→Asn取代导致内向质子通道改变的结果。在没有pH缓冲剂的情况下,用吡喃宁测量的野生型细菌视紫红质和D96N突变体的质子释放是相同的,并且与M→M'构象转变相匹配。提出了细菌视紫红质光循环中M上升的模型。