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Ca(2+) 耗尽的 S1 和 S2 状态下锰簇的结构和功能修饰:电子顺磁共振和 X 射线吸收光谱研究

Structural and functional modifications of the manganese cluster in Ca(2+)-depleted S1 and S2 states: electron paramagnetic resonance and X-ray absorption spectroscopy studies.

作者信息

Ono T, Kusunoki M, Matsushita T, Oyanagi H, Inoue Y

机构信息

Solar Energy Research Group, Institute of Physical and Chemical Research (RIKEN), Saitama, Japan.

出版信息

Biochemistry. 1991 Jul 16;30(28):6836-41. doi: 10.1021/bi00242a005.

DOI:10.1021/bi00242a005
PMID:1648962
Abstract

The effect of extraction of weakly bound Ca2+ by low-pH treatment on the O2-evolving apparatus was studied by use of low-temperature electron paramagnetic resonance (EPR) and X-ray absorption spectroscopy. In low-pH-treated PSII membranes, an S2 EPR multiline signal with modified line shape was induced by illumination at 0 degrees C, but its signal amplitude decreased upon lowering the excitation temperature with concomitant oxidation of cytochrome (cyt) b-559 in place of Mn. The half-inhibition temperature for formation of the modified multiline signal was found at -33 degrees C, which was much higher than that for formation of the normal S2 state in untreated control membranes. Signal IIf was normally induced down to -30 degrees C, but its dependence on excitation temperature was different from that for modified S2. This was interpreted as indicating that the low-temperature blockage of modified S2 formation is due to the incapability of electron abstraction from the Mn cluster. The Mn K-edge of X-ray absorption near-edge structure (XANES) spectrum shifted to lower energy by 0.8 eV after low-pH treatment, but the shift was reversed by addition of Ca2+. Upon illumination at 0 degrees C of treated membranes, the K-edge energy was up-shifted by 0.8 eV, but was not upon illumination at 210 K. These results were interpreted as indicating that extraction of weakly bound Ca2+ by low-pH treatment gives rise to structural and functional modulations of the Mn cluster.

摘要

利用低温电子顺磁共振(EPR)和X射线吸收光谱研究了低pH处理提取弱结合Ca2+对放氧装置的影响。在低pH处理的PSII膜中,0℃光照诱导出具有改变线形的S2 EPR多线信号,但随着激发温度降低,其信号幅度减小,同时细胞色素(cyt)b-559氧化取代了Mn。发现修饰多线信号形成的半抑制温度为-33℃,远高于未处理对照膜中正常S2态形成的半抑制温度。信号IIf通常在-30℃以下诱导产生,但其对激发温度的依赖性与修饰的S2不同。这被解释为表明修饰S2形成的低温阻断是由于无法从Mn簇中提取电子。低pH处理后,X射线吸收近边结构(XANES)光谱的Mn K边向低能量移动了0.8 eV,但通过添加Ca2+可使该移动逆转。在0℃光照处理过的膜时,K边能量上移了0.8 eV,但在210 K光照时则没有。这些结果被解释为表明低pH处理提取弱结合Ca2+会引起Mn簇的结构和功能调节。

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引用本文的文献

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