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利用光热光束偏转技术通过时间分辨量热法追踪光合水氧化过程中的焓变。

Enthalpy changes during photosynthetic water oxidation tracked by time-resolved calorimetry using a photothermal beam deflection technique.

作者信息

Krivanek Roland, Dau Holger, Haumann Michael

机构信息

Freie Universität Berlin, Fachbereich Physik, Berlin, Germany.

出版信息

Biophys J. 2008 Mar 1;94(5):1890-903. doi: 10.1529/biophysj.107.117085. Epub 2007 Nov 9.

Abstract

The energetics of the individual reaction steps in the catalytic cycle of photosynthetic water oxidation at the Mn(4)Ca complex of photosystem II (PSII) are of prime interest. We studied the electron transfer reactions in oxygen-evolving PSII membrane particles from spinach by a photothermal beam deflection technique, allowing for time-resolved calorimetry in the micro- to millisecond domain. For an ideal quantum yield of 100%, the enthalpy change, DeltaH, coupled to the formation of the radical pair Y(Z)(.+)Q(A)(-) (where Y(Z) is Tyr-161 of the D1 subunit of PSII) is estimated as -820 +/- 250 meV. For a lower quantum yield of 70%, the enthalpy change is estimated to be -400 +/- 250 meV. The observed nonthermal signal possibly is due to a contraction of the PSII protein volume (apparent DeltaV of about -13 A(3)). For the first time, the enthalpy change of the O(2)-evolving transition of the S-state cycle was monitored directly. Surprisingly, the reaction is only slightly exergonic. A value of DeltaH(S(3)-->S(0)) of -210 meV is estimated, but also an enthalpy change of zero is within the error range. A prominent nonthermal photothermal beam deflection signal (apparent DeltaV of about +42 A(3)) may reflect O(2) and proton release from the manganese complex, but also reorganization of the protein matrix.

摘要

对光系统II(PSII)的Mn(4)Ca复合物催化循环中各个反应步骤的能量学研究具有至关重要的意义。我们通过光热光束偏转技术研究了菠菜中放氧PSII膜颗粒的电子转移反应,该技术可实现微秒到毫秒范围内的时间分辨量热法。对于理想量子产率为100%的情况,与自由基对Y(Z)(.+)Q(A)(-)(其中Y(Z)是PSII的D1亚基的Tyr-161)形成相关的焓变ΔH估计为-820±250 meV。对于较低量子产率70%的情况,焓变估计为-400±250 meV。观察到的非热信号可能是由于PSII蛋白质体积的收缩(表观ΔV约为-13 ų)。首次直接监测了S态循环中O₂释放转变的焓变。令人惊讶的是,该反应只是略微放能。估计ΔH(S(3)-->S(0))的值为-210 meV,但焓变为零的值也在误差范围内。一个显著的非热光热光束偏转信号(表观ΔV约为+42 ų)可能反映了O₂和质子从锰复合物中的释放,也可能反映了蛋白质基质的重组。

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