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傅里叶变换红外光谱(FTIR)证据表明,PsbP外在蛋白会诱导光系统II中放氧锰簇周围的蛋白质构象变化。

FTIR evidence that the PsbP extrinsic protein induces protein conformational changes around the oxygen-evolving Mn cluster in photosystem II.

作者信息

Tomita Megumi, Ifuku Kentaro, Sato Fumihiko, Noguchi Takumi

机构信息

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

出版信息

Biochemistry. 2009 Jul 14;48(27):6318-25. doi: 10.1021/bi9006308.

Abstract

Extrinsic proteins of photosystem II (PSII) regulate the oxygen-evolving reaction performed at the Mn cluster by controlling the binding properties of the indispensable cofactors Ca(2+) and Cl(-). However, the molecular mechanism underlying this regulation is not yet understood. We have investigated the structural couplings of the extrinsic proteins PsbO, PsbP, and PsbQ of higher plants with the Mn cluster using Fourier transform infrared (FTIR) spectroscopy. Light-induced FTIR difference spectra upon the S(1) --> S(2) transition were measured using spinach PSII membranes, and the effects of the selective depletion of extrinsic proteins were examined. Depletion of the PsbP and PsbQ proteins by NaCl washing revealed clear changes in the amide I bands with no appreciable changes in the bands of carboxylate and imidazole groups, whereas the depletion of all three proteins by CaCl(2) washing did not cause further changes. The original amide I features were recovered by reconstitution of the NaCl-washed PSII with PsbP, and the same recovery was observed with (13)C-labeled PsbP. These results indicate that the PsbP protein, but not PsbQ and PsbO, affects the protein conformation around the Mn cluster in the intrinsic proteins without changing the ligand structure. Reconstitution with Delta15-PabP, in which the 15 N-terminal residues were truncated, did not restore the amide I bands, indicating that the interaction of the N-terminal region induces the conformational changes. This observation correlates well with a previous finding that Delta15-PabP did not restore the Ca(2+) and Cl(-) retention ability upon rebinding to PSII [Ifuku, K., et al. (2005) Photosynth. Res. 84, 251-255]. Therefore, the evidence strongly suggests that protein conformational changes around the Mn cluster induced by PsbP through its N-terminal region affect the binding properties of Ca(2+) and Cl(-) and enhance their retention.

摘要

光系统II(PSII)的外在蛋白通过控制不可或缺的辅因子Ca(2+)和Cl(-)的结合特性来调节在Mn簇上进行的放氧反应。然而,这种调节背后的分子机制尚不清楚。我们使用傅里叶变换红外(FTIR)光谱研究了高等植物外在蛋白PsbO、PsbP和PsbQ与Mn簇的结构耦合。使用菠菜PSII膜测量了S(1) --> S(2)跃迁时的光诱导FTIR差光谱,并研究了外在蛋白选择性缺失的影响。用NaCl洗涤使PsbP和PsbQ蛋白缺失,酰胺I带出现明显变化,而羧酸盐和咪唑基团的带没有明显变化,而用CaCl(2)洗涤使所有三种蛋白缺失则没有引起进一步变化。用PsbP重建经NaCl洗涤的PSII可恢复原来的酰胺I特征,用(13)C标记的PsbP也观察到相同的恢复情况。这些结果表明,PsbP蛋白而非PsbQ和PsbO会影响内在蛋白中Mn簇周围的蛋白质构象,而不改变配体结构。用缺失15个N端残基的Delta15-PabP重建不能恢复酰胺I带,表明N端区域的相互作用诱导了构象变化。这一观察结果与先前的发现很好地相关,即Delta15-PabP重新结合到PSII时不能恢复Ca(2+)和Cl(-)的保留能力[Ifuku, K.,等人(2005年)。光合作用研究。84, 251 - 255]。因此,有力的证据表明,PsbP通过其N端区域诱导的Mn簇周围的蛋白质构象变化会影响Ca(2+)和Cl(-)的结合特性并增强它们的保留。

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