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光合水氧化中心S态循环过程中的水反应监测:利用傅里叶变换红外光谱法检测DOD弯曲振动

Monitoring water reactions during the S-state cycle of the photosynthetic water-oxidizing center: detection of the DOD bending vibrations by means of Fourier transform infrared spectroscopy.

作者信息

Suzuki Hiroyuki, Sugiura Miwa, Noguchi Takumi

机构信息

Institute of Materials Science, University of Tsukuba, Tsukuba, Ibaraki 305-8573, Japan.

出版信息

Biochemistry. 2008 Oct 21;47(42):11024-30. doi: 10.1021/bi801580e. Epub 2008 Sep 27.

Abstract

Photosynthetic water oxidation takes place in the water-oxidizing center (WOC) of photosystem II (PSII). To clarify the mechanism of water oxidation, detecting water molecules in the WOC and monitoring their reactions at the molecular level are essential. In this study, we have for the first time detected the DOD bending vibrations of functional D 2O molecules during the S-state cycle of the WOC by means of Fourier transform infrared (FTIR) difference spectroscopy. Flash-induced FTIR difference spectra upon S-state transitions were measured using the PSII core complexes from Thermosynechococcus elongatus moderately deuterated with D 2 (16)O and D 2 (18)O. D 2 (16)O-minus-D 2 (18)O double difference spectra at individual S-state transitions exhibited six to eight peaks arising from the D (16)OD/D (18)OD bending vibrations in the 1250-1150 cm (-1) region. This observation indicates that at least two water molecules, not in any deprotonated forms, participate in the reaction at each S-state transition throughout the cycle. Most of the peaks exhibited clear counter peaks with opposite signs at different transitions, reflecting a series of reactions of water molecules at the catalytic site. In contrast, negative bands at approximately 1240 cm (-1) in the S 2 --> S 3, S 3 --> S 0, and possibly S 0 --> S 1 transitions, for which no clear counter peaks were found in other transitions, can be interpreted as insertion of substrate water into the WOC from a water cluster in the proteins. The characteristics of the weakly D-bonded OD stretching bands were consistent with the insertion of substrate from internal water molecules in the S 2 --> S 3 and S 3 --> S 0 transitions. The results of this study show that FTIR detection of the DOD bending vibrations is a powerful method for investigating the molecular mechanism of photosynthetic water oxidation as well as other enzymatic reactions involving functional water molecules.

摘要

光合水氧化发生在光系统II(PSII)的水氧化中心(WOC)。为阐明水氧化机制,在分子水平上检测WOC中的水分子并监测其反应至关重要。在本研究中,我们首次借助傅里叶变换红外(FTIR)差示光谱法,在WOC的S态循环过程中检测到了功能性D₂O分子的DOD弯曲振动。使用经D₂(¹⁶)O和D₂(¹⁸)O适度氘代的嗜热栖热放线菌的PSII核心复合物,测量了S态转变时的闪光诱导FTIR差示光谱。在各个S态转变处的D₂(¹⁶)O减去D₂(¹⁸)O双差示光谱在1250 - 1150 cm⁻¹区域显示出由D(¹⁶)OD/D(¹⁸)OD弯曲振动产生的六到八个峰。这一观察结果表明,在整个循环的每个S态转变过程中,至少有两个未处于任何去质子化形式的水分子参与反应。大多数峰在不同转变处呈现出具有相反符号的清晰反峰,反映了水分子在催化位点的一系列反应。相比之下,在S₂→S₃、S₃→S₀以及可能的S₀→S₁转变中,在约1240 cm⁻¹处出现的负带,在其他转变中未发现清晰的反峰,可解释为底物水从蛋白质中的水簇插入到WOC中。弱D键合的OD伸缩带的特征与S₂→S₃和S₃→S₀转变中内部水分子插入底物一致。本研究结果表明,FTIR检测DOD弯曲振动是研究光合水氧化分子机制以及其他涉及功能性水分子的酶促反应的有力方法。

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