Brettel K, Leibl W, Liebl U
Section de Bioénergétique, DBCM, CEA and CNRS URA 2096, Centre d'Etudes de Saclay, 91191 Gif-sur-Yvette Cedex, France.
Biochim Biophys Acta. 1998 Mar 25;1363(3):175-81. doi: 10.1016/s0005-2728(98)00010-3.
Membrane fragments from Heliobacillus mobilis were characterized using time resolved optical spectroscopy and photovoltage measurements in order to detect a possible participation of menaquinone (MQ), functioning analogous to the phylloquinone A1 in photosystem I, as intermediate in electron transfer from the primary acceptor A0 to the iron-sulfur cluster FX in the photosynthetic reaction center. The spectroscopic data obtained exclude that electron transfer from a semiquinone anion MQ- to FX occurred in the time window from 2 ns to 4 micros, where it would be expected in analogy to photosystem I. In the case of a prereduction of FX, only the primary pair P798+A0- was formed. The photovoltage data yielded a single kinetic phase with a time constant of 700 ps for the transmembrane electron transfer beyond A0; the relative amplitude of this phase suggests that it reflects electron transfer from A0- to FX.
利用时间分辨光谱和光电压测量对运动嗜盐杆菌的膜片段进行了表征,以检测维生素K(MQ)作为从初级受体A0到光合反应中心铁硫簇FX的电子转移中间体的可能参与情况,其功能类似于光系统I中的叶绿醌A1。获得的光谱数据排除了在2纳秒至4微秒的时间窗口内发生从半醌阴离子MQ-到FX的电子转移的可能性,而在光系统I中这种情况是可以预期的。在FX预还原的情况下,仅形成了初级对P798+A0-。光电压数据给出了一个单一的动力学相,其时间常数为700皮秒,用于A0之外的跨膜电子转移;该相的相对幅度表明它反映了从A0-到FX的电子转移。