Melis A, Schreiber U
Biochim Biophys Acta. 1979 Jul 10;547(1):47-57. doi: 10.1016/0005-2728(79)90094-x.
The light minus dark difference spectrum and the kinetics of the indicator pigment C-550 have been measured at room temperature in isolate, envelope-free chloroplasts in the presence of 3-(3' ,4'-dichlorophenyl)-1,1-dimethylurea (DCMU). The C-550 spectrum indicates a band shift with peaks at 540 and 550 nm and has an isobestic point at 545 nm. On the assumption of 400 chlorophyll molecules per electron transfer chain the differentaial extinction coefficient delta epsilon (540-550) is calculated to be approximately 5 mM-1 . CM-1. The kinetics of the C-550 absorbance change, occurring upin the onset of continuous illumination, are shown to be biphasic and strictly correlated with the kinetics of the complementary area measured from the fluorescence induction curve under identical cinditions and with those of the absorbance increase at 320 nm due to photoreduction of Q. The lighted-induced change in these three parameters can be described as a function of the variable fluorescence yield change occurring under the same conditions. Such functions are non-linear and reveal a heterogeneous dependence of the variable fluorescence yield on the fraction of closed System II reaction centers. It is concluded that for every molecule of the primary electron acceptor Q of Photosystem II that is photochemically reduced there corresponds an equivalent change in the absorbance of the indicator pigment C-550 and in the size of the complementary area. Ths, C-550 and area are two valid parameters for monitoring the primary photochemical activity of System II at the room temperature.
在室温下,于存在3 -(3',4'-二氯苯基)-1,1 -二甲基脲(DCMU)的分离的、无包膜的叶绿体中,测量了光减去暗的差示光谱以及指示色素C - 550的动力学。C - 550光谱显示出峰位于540和550 nm处的谱带位移,并且在545 nm处有一个等吸收点。假设每个电子传递链有400个叶绿素分子,则计算出的微分消光系数δε(540 - 550)约为5 mM⁻¹·cm⁻¹。在持续光照开始时发生的C - 550吸光度变化的动力学显示为双相的,并且与在相同条件下从荧光诱导曲线测量的互补区域的动力学以及由于Q的光还原在320 nm处的吸光度增加严格相关。这三个参数的光诱导变化可以描述为在相同条件下发生的可变荧光产率变化的函数。这些函数是非线性的,并且揭示了可变荧光产率对封闭的光系统II反应中心分数的非均匀依赖性。得出的结论是,对于光系统II的每个被光化学还原的初级电子受体Q分子,指示色素C - 550的吸光度和互补区域的大小都有相应的等效变化。因此,C - 550和区域是在室温下监测光系统II初级光化学活性的两个有效参数。