Palazzo Gerardo, Mallardi Antonia, Hochkoeppler Alejandro, Cordone Lorenzo, Venturoli Giovanni
Dipartimento di Chimica, Università di Bari, 70126 Bari, Italy.
Biophys J. 2002 Feb;82(2):558-68. doi: 10.1016/S0006-3495(02)75421-0.
We report on room temperature electron transfer in the reaction center (RC) complex purified from Rhodobacter sphaeroides. The protein was embedded in trehalose-water systems of different trehalose/water ratios. This enabled us to get new insights on the relationship between RC conformational dynamics and long-range electron transfer. In particular, we measured the kinetics of electron transfer from the primary reduced quinone acceptor (Q(A)(-)) to the primary photo oxidized donor (P(+)), by time-resolved absorption spectroscopy, as a function of the matrix composition. The composition was evaluated either by weighing (liquid samples) or by near infrared spectroscopy (highly viscous or solid glasses). Deconvolution of the observed, nonexponential kinetics required a continuous spectrum of rate constants. The average rate constant (
我们报道了从球形红细菌中纯化得到的反应中心(RC)复合物在室温下的电子转移情况。该蛋白质被嵌入到具有不同海藻糖/水比例的海藻糖 - 水体系中。这使我们能够对RC构象动力学与长程电子转移之间的关系有新的认识。具体而言,我们通过时间分辨吸收光谱法测量了从初级还原醌受体(Q(A)(-))到初级光氧化供体(P(+))的电子转移动力学,该动力学是基质组成的函数。基质组成通过称重(液体样品)或近红外光谱法(高粘性或固体玻璃)进行评估。对观察到的非指数动力学进行反卷积需要连续的速率常数谱。平均速率常数(在28%(w/w)海藻糖溶液中