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光系统II锰稳定蛋白二聚体的结晶

Crystallization of dimers of the manganese-stabilizing protein of Photosystem II.

作者信息

Anati R, Adir N

机构信息

Department of Chemistry and Institute of Catalysis, Science and Technology, Technion - Israel Institute of Technology, Technion City, Haifa, 32000, Israel.

出版信息

Photosynth Res. 2000;64(2-3):167-77. doi: 10.1023/A:1006453718502.

Abstract

The manganese-stabilizing protein (MSP) of Photosystem II was purified from spinach photosynthetic membranes. The MSP was crystallized in the presence of calcium. Despite the apparent purity of the isolated protein, the crystals grew to only about 0.05 mm in their largest dimension. The MSP was analyzed to identify possible sources of protein heterogeneity that could hinder crystal growth. Tandem reverse-phase HPLC/ electronspray ionization mass spectrometry analysis of the MSP showed a major peak and four smaller peaks. All five peaks had molecular masses of 26 535, as expected for mature MSP, indicating the absence of heterogeneities due to covalent modifications. MALDI mass spectroscopy was utilized to identify heterogeneities in the MSP oligomeric state. These measurements showed that purified MSP in solution is a mixture of monomers and dimers, while solubilized MSP crystals contained only dimers. Size-exclusion chromatography and dynamic light scattering were used to probe the effect of the crystallization conditions on the MSP. Size-exclusion chromatography of concentrated MSP showed the presence of aggregates and monomers, while dilute MSP contained monomers. Dynamic light scattering experiments in the absence, or in the presence of 10-50 mM or 100 mM calcium, yielded calculated molecular mass values of 34 kDa, 48 kDa and 68 kDa, respectively. These changes in the observed molecular mass of the MSP could have been caused by the formation of dimers and higher oligomers and/or significant conformational changes. Based on the results reported in this study, a model is presented which details the effect of oligomeric heterogeneity on the inhibition of MSP crystal growth.

摘要

光系统II的锰稳定蛋白(MSP)是从菠菜光合膜中纯化得到的。MSP在钙存在的情况下结晶。尽管分离出的蛋白看似纯净,但晶体最大尺寸仅生长到约0.05毫米。对MSP进行分析以确定可能阻碍晶体生长的蛋白质异质性来源。对MSP进行串联反相高效液相色谱/电喷雾电离质谱分析,结果显示有一个主峰和四个较小的峰。所有五个峰的分子量均为26 535,这与成熟MSP预期的分子量一致,表明不存在由于共价修饰导致的异质性。利用基质辅助激光解吸电离质谱法来鉴定MSP寡聚状态的异质性。这些测量结果表明,溶液中的纯化MSP是单体和二聚体的混合物,而溶解的MSP晶体仅包含二聚体。使用尺寸排阻色谱法和动态光散射法来探究结晶条件对MSP的影响。对浓缩MSP进行尺寸排阻色谱分析显示存在聚集体和单体,而稀释的MSP则只含有单体。在不存在钙、存在10 - 50 mM钙或100 mM钙的情况下进行动态光散射实验,分别得到计算分子量值为34 kDa、48 kDa和68 kDa。MSP观察到的分子量变化可能是由二聚体和更高聚体的形成以及/或者显著的构象变化引起的。基于本研究报告的结果,提出了一个模型,该模型详细阐述了寡聚异质性对MSP晶体生长抑制的影响。

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