Baymann F, Rappaport F
Institut de Biologie Physico-Chimique, CNRS UPR 1261, Paris, France.
Biochemistry. 1998 Nov 3;37(44):15320-6. doi: 10.1021/bi980963z.
The photosynthetic reaction center of Rhodopseudomonas viridis, a purple bacterium, contains a tetraheme cytochrome subunit. After its photoinduced oxidation, the primary donor, P, is reduced by the nearby heme (c559) of the tetraheme subunit in about 200 ns. This heme, in turn, is reduced by another heme (c556) of the subunit in about 2 micro(s). The midpoint potentials of P, c559, and c556 are known to be +500, +380, and +320 mV, respectively. The reduction kinetics of P+ are strongly biphasic in living cells, membrane fragments, and isolated reaction centers. We show here that this biphasicity reflects a small equilibrium constant (lower than 10) for the electron-transfer reaction between P and c559, which arises from a significant difference between the operating redox potentials of the P+/P and c559+/c559 couples and their equilibrium midpoint potentials. This difference is partly due to the effect of the permanent transmembrane potential, which arises from the cell metabolism, and to significant electrostatic interactions which develop between the electron carriers of the reaction center. Interestingly, the kinetic parameters of P+ reduction in decoupled cells or membrane fragments are identical to those reported for isolated reaction centers. We estimate an interaction of about 20 mV between c556 and c559 and about 90 mV between c559 and P. Consequently, the operating redox potential of the P+/P couple is 410 mV.
绿脓杆菌(一种紫色细菌)的光合反应中心包含一个四血红素细胞色素亚基。在其光诱导氧化后,初级供体P在约200纳秒内被四血红素亚基附近的血红素(c559)还原。反过来,这个血红素又在约2微秒内被该亚基的另一个血红素(c556)还原。已知P、c559和c556的中点电位分别为+500、+380和+320毫伏。在活细胞、膜片段和分离的反应中心中,P+的还原动力学具有强烈的双相性。我们在此表明,这种双相性反映了P与c559之间电子转移反应的一个小平衡常数(低于10),这是由于P+/P和c559+/c559偶联的操作氧化还原电位与其平衡中点电位之间存在显著差异所致。这种差异部分归因于细胞代谢产生的永久跨膜电位的影响,以及反应中心电子载体之间产生的显著静电相互作用。有趣的是,解偶联细胞或膜片段中P+还原的动力学参数与分离的反应中心所报道的参数相同。我们估计c556与c559之间的相互作用约为20毫伏,c559与P之间的相互作用约为90毫伏。因此,P+/P偶联的操作氧化还原电位为410毫伏。