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首页> 外文期刊>Biochemistry >Structural perturbation of the carboxylate ligands to the manganese cluster upon Ca2+/Sr2+ exchange in the S-state cycle of photosynthetic oxygen evolution as studied by flash-induced FTIR difference spectroscopy
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Structural perturbation of the carboxylate ligands to the manganese cluster upon Ca2+/Sr2+ exchange in the S-state cycle of photosynthetic oxygen evolution as studied by flash-induced FTIR difference spectroscopy

机译:通过闪光诱导的FTIR差异光谱研究,在光合氧气释放的S态循环中,Ca2 + / Sr2 +交换后,羧酸盐配体对锰簇的结构扰动

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摘要

A Ca2+ ion is an indispensable element in the oxygen-evolving Mn cluster in photosystem II (PSII). To investigate the structural relevance of Ca2+ to the Mn cluster, the effects of Sr2+ substitution for Ca2+ on the structures and reactions of ligands to the Mn cluster during the S-state cycle were investigated using flash-induced Fourier transform infrared ( FTIR) difference spectroscopy. FTIR difference spectra representing the four S-state transitions, S-1 -> S-2, S-2 -> S-3, S-3 -> S-0, and S-0 -> S-1, were recorded by applying four consecutive flashes either to PSII core complexes from Thermosynechococcus elongatus or to PSII-enriched membranes from spinach. The spectra were also recorded using biosynthetically Sr(2+)substituted PSII core complexes from T. elongatus and biochemically Sr2+-substituted PSII membranes from spinach. Several common spectral changes upon Sr2+ substitution were observed in the COO(-)stretching region of the flash-induced spectra for both preparations, which were best expressed in Ca2+-minus-Sr2+ double difference spectra. The significant intensity changes in the symmetric COO- peaks at similar to 1364 and similar to 1418 cm(-1) at the first flash were reversed as opposite intensity changes at the third flash, and the slight shift of the similar to 1446 cm-1 peak at the second flash corresponded to the similar but opposite shift at the fourth flash. Analyses of these changes suggest that there are at least three carboxylate ligands whose structures are significantly perturbed by Ca2+/Sr2+ exchange. They are (1) the carboxylate ligand having a bridging or unidentate structure in the S2 and S3 states and perturbed in the S-1 -> S-2 and S-3 -> S-0 transitions, (2) that with a chelating or bridging structure in the S1 and S0 states and perturbed also in the S-1 -> S-2 and S-3 -> S-0 transitions, and (3) that with a chelating structure in the S-3 and S-0 states and changes in the S-2 -> S-3 and S-0 -> S-1 transitions. Taking into account the recent FTIR studies using site-directed mutagenesis and/or isotope substitution [Chu et al. (2004) Biochemistry 43,3152- 3116; Kimura et al. (2005) J. Biol. Chem. 280, 2078-2083; Strickler et al. (2006) Biochemistry 45, 8801-8811], it was concluded that these carboxylate groups do not originate from either D1-Ala344 (C-terminus) or D1-Glu189, which are located near the Ca2+ ion in the X-ray crystallographic model of the Mn cluster. It was thus proposed that if the X-ray model is correct, the above carboxylate groups sensitive to Sr2+ substitution are ligands to the Mn ions strongly coupled to the Ca2+ ion rather than direct ligands to Ca2+.
机译:Ca2 +离子是光系统II(PSII)中放氧的Mn簇中不可或缺的元素。为了研究Ca2 +与Mn团簇的结构相关性,使用闪光诱导傅立叶变换红外(FTIR)差光谱技术研究了Sr2 +取代Ca2 +对S态循环过程中配体对Mn团簇的结构和反应的影响。记录了代表四个S状态跃迁的FTIR差异光谱,即S-1-> S-2,S-2-> S-3,S-3-> S-0和S-0-> S-1。通过将四个连续的闪光施加到伸长的嗜热嗜热球菌的PSII核心复合物上或菠菜的富含PSII的膜上。光谱也使用来自T.longatatus的生物合成的Sr(2+)取代的PSII核心配合物和来自菠菜的生物化学的Sr2 +取代的PSII膜记录。在两种制剂的闪光诱导光谱的COO(-)拉伸区中均观察到了Sr2 +取代后的几种常见光谱变化,这些变化在Ca2 + -Sr2 +双差光谱中得到了最好的体现。对称的COO-峰在第一闪点处的显着强度变化被逆转,因为在第三闪点处的强度相反的变化发生了逆转,而类似于1364 cm-1的轻微偏移被反转了第二闪动的峰值对应于第四闪动的相似但相反的偏移。对这些变化的分析表明,至少有3个羧酸盐配体的结构被Ca2 + / Sr2 +交换显着干扰。它们是(1)在S2和S3状态下具有桥联或不相同结构并在S-1-> S-2和S-3-> S-0过渡中受到干扰的羧酸盐配体,(2)具有螯合作用的或在S1和S0状态下的桥接结构,并且在S-1-> S-2和S-3-> S-0过渡中也受到干扰,(3)在S-3和S-中具有螯合结构S-2-> S-3和S-0-> S-1转换中的0状态和更改。考虑到最近的使用定点诱变和/或同位素取代的FTIR研究[Chu等。 (2004)Biochemistry 43,3152- 3116;木村等。 (2005)J.Biol。化学280,2078-2083; Strickler等。 (2006)Biochemistry 45,8801-8811],得出的结论是,这些羧酸盐基团不是源自D1-Ala344(C末端)或D1-Glu189,它们在X射线晶体学模型中位于Ca2 +离子附近。锰团簇。因此提出如果X射线模型是正确的,则上述对Sr2 +取代敏感的羧酸盐基团是与Ca2 +离子牢固偶联的Mn离子的配体,而不是Ca2 +的直接配体。

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