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光系统II中电子从Q(a)向Q(b)转移的动力学

Kinetics of electron transfer from Q(a) to Q(b) in photosystem II.

作者信息

de Wijn R, van Gorkom H J

机构信息

Department of Biophysics, Leiden University, P.O. Box 9504, 2300 RA Leiden, The Netherlands.

出版信息

Biochemistry. 2001 Oct 2;40(39):11912-22. doi: 10.1021/bi010852r.

Abstract

The oxidation kinetics of the reduced photosystem II electron acceptor Q(A)(-) was investigated by measurement of the chlorophyll fluorescence yield transients on illumination of dark-adapted spinach chloroplasts by a series of saturating flashes. Q(A)(-) oxidation depends on the occupancy of the "Q(B) binding site", where this reaction reduces plastoquinone to plastoquinol in two successive photoreactions. The intermediate, one-electron-reduced plastosemiquinone anion Q(B)(-) remains tightly bound, and its reduction by Q(A)(-) may proceed with simple first-order kinetics. The next photoreaction, in contrast, may find the Q(B) binding site occupied by a plastoquinone, a plastoquinol, or neither of the two, resulting in heterogeneous Q(A)(-) oxidation kinetics. The assumption of monophasic Q(B)(-) reduction kinetics is shown to allow unambiguous decomposition of the observed multiphasic Q(A)(-) oxidation. At pH 6.5 the time constant for Q(A)(-) oxidation was found to be 0.2-0.4 ms with Q(B) in the site, 0.6-0.8 ms with Q(B)(-) in the site, 2-3 ms when the site is empty and Q(B) has to bind first, and of the order of 0.1 s if the site is temporarily blocked by the presence of Q(B)H(2) or other low-affinity inhibitors such as carbonyl cyanide m-chlorophenylhydrazone (CCCP). Effects of pH and H(2)O/D(2)O exchange were found to be remarkably nonspecific. No influence of the S-states could be demonstrated.

摘要

通过测量一系列饱和闪光照射暗适应菠菜叶绿体时叶绿素荧光产量瞬变,研究了还原的光系统II电子受体Q(A)(-)的氧化动力学。Q(A)(-)的氧化取决于“Q(B)结合位点”的占据情况,在此反应中,质体醌在两个连续的光反应中被还原为质体氢醌。中间产物,单电子还原的质体半醌阴离子Q(B)(-)保持紧密结合,其被Q(A)(-)还原可能以简单的一级动力学进行。相比之下,下一个光反应可能会发现Q(B)结合位点被质体醌、质体氢醌占据,或者两者都未占据,从而导致Q(A)(-)氧化动力学的异质性。结果表明,假设Q(B)(-)还原动力学为单相,可明确分解观察到的多相Q(A)(-)氧化。在pH 6.5时,发现Q(A)(-)氧化的时间常数在Q(B)在位时为0.2 - 0.4毫秒,Q(B)(-)在位时为0.6 - 0.8毫秒,位点为空且Q(B)必须先结合时为2 - 3毫秒,如果位点被Q(B)H(2)或其他低亲和力抑制剂如羰基氰化物间氯苯腙(CCCP)暂时阻断,则为0.1秒左右。发现pH和H(2)O/D(2)O交换的影响非常非特异性。未证明S态有影响。

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