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Acetonitrile-induced unfolding of the photosystem II manganese-stabilizing protein studied by electrospray mass spectrometry

机译:乙腈诱导的光系统II锰稳定蛋白的展开通过电喷雾质谱研究

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摘要

In this paper an acetonitrile-induced unfolding of the manganese-stabilizing protein (MSP) of photosystem II was discovered. More distinct unfolding states of MSP were identified than previously by using mainly electrospray ionization mass spectrometry (ESI-MS), together with fluorescence spectra and far-UV circular dichroism (CD) at pH 2.0, 6.2 or 11.6, and with acetonitrile concentrations from 0 to 50%. At pH 6.2 with acetonitrile concentration changing from 0 to 10%, relatively broad charge-state distributions and poor intensity were observed in ESI-MS, indicating the presence of coexisting conformers. It was concluded that the structure of the MSP protein is unlikely to be a tightly folded form. When the concentration of acetonitrile was 20-40%, simulating the state in the biological membrane, changes in the state of unfolding of MSP were observed to a certain extent using ESI-MS, fluorescence and CD spectroscopy. The charge-state distribution in ESI-MS was found to move toward high states (from 13(+) to 27(+) to 15(+) to 31(+)) with increasing acetonitrile concentration. At pH 2.0, the MSP structure is rearranged into an unfolded state, and at pH 11.6 the MSP structure is induced to assume another unordered state by deprotonation of appropriate residues. An interesting observation was that a second peak envelope emerged with 20-50% acetonitrile in the medium at pH 11.6. Copyright (c) 2005 John Wiley & Sons, Ltd.
机译:在本文中,发现了乙腈诱导的光系统II的锰稳定蛋白(MSP)的折叠。通过使用电喷雾电离质谱(ESI-MS),荧光光谱和远紫外圆二色性(CD)在pH 2.0、6.2或11.6以及乙腈浓度从0开始时,可​​以确定MSP的展开状态比以前更明显。到50%在pH 6.2且乙腈浓度从0%变为10%的情况下,在ESI-MS中观察到相对较宽的电荷状态分布和较差的强度,表明存在共存的构象异构体。结论是MSP蛋白的结构不太可能是紧密折叠的形式。当乙腈的浓度为20-40%时,模拟生物膜中的状态,使用ESI-MS,荧光和CD光谱在一定程度上观察到MSP展开状态的变化。发现随着乙腈浓度的增加,ESI-MS中的电荷态分布向高态(从13(+)到27(+)到15(+)到31(+))移动。在pH 2.0时,MSP结构重新排列成未折叠状态,在pH 11.6时,MSP结构通过适当残基去质子化而呈现另一种无序状态。一个有趣的观察结果是在pH 11.6的介质中出现了第二个峰包膜,其中含有20-50%的乙腈。版权所有(c)2005 John Wiley&Sons,Ltd.

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