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通过准弹性中子散射研究绿色植物光系统II中温度和水合作用依赖的蛋白质动力学。

Temperature- and hydration-dependent protein dynamics in photosystem II of green plants studied by quasielastic neutron scattering.

作者信息

Pieper Jörg, Hauss Thomas, Buchsteiner Alexandra, Baczyński Krzysztof, Adamiak Karolina, Lechner Ruep E, Renger Gernot

机构信息

Max-Volmer-Laboratories for Biophysical Chemistry, Technische Universität Berlin, Strasse des 17. Juni 135, 10623 Berlin, Germany.

出版信息

Biochemistry. 2007 Oct 9;46(40):11398-409. doi: 10.1021/bi700179s. Epub 2007 Sep 15.

Abstract

Protein dynamics in hydrated and vacuum-dried photosystem II (PS II) membrane fragments from spinach has been investigated by quasielastic neutron scattering (QENS) in the temperature range between 5 and 300 K. Three distinct temperature ranges can be clearly distinguished by active type(s) of protein dynamics: (A) At low temperatures (T < 120 K), the protein dynamics of both dry and hydrated PS II is characterized by harmonic vibrational motions. (B) In the intermediate temperature range (120 < T < 240 K), the total mean square displacement total slightly deviates from the predicted linear behavior. The QENS data indicate that this deviation, which is virtually independent of the extent of hydration, is due to a partial onset of diffusive protein motions. (C) At temperatures above 240 K, the protein flexibility drastically changes because of the onset of diffusive (large-amplitude) protein motions. This dynamical transition is clearly hydration-dependent since it is strongly suppressed in dry PS II. The thermally activated onset of protein flexibility as monitored by QENS is found to be strictly correlated with the temperature-dependent increase of the electron transport efficiency from Q(A)(-) to QB (Garbers et al. (1998) Biochemistry 37, 11399-11404). Analogously, the freezing of protein mobility by dehydration in dry PS II appears to be responsible for the blockage of Q(A)(-) reoxidation by Q(B) at hydration values lower than 45% r.h. (Kaminskaya et al. (2003) Biochemistry 42, 8119-8132). Similar effects were observed for reactions of the water-oxidizing complex as outlined in the Discussion section.

摘要

利用准弹性中子散射(QENS)技术,在5至300K的温度范围内,对菠菜中水分合和真空干燥的光系统II(PS II)膜片段中的蛋白质动力学进行了研究。根据蛋白质动力学的活性类型,可以清晰地区分出三个不同的温度范围:(A)在低温(T < 120K)下,干燥和水分合的PS II的蛋白质动力学均以谐波振动运动为特征。(B)在中间温度范围(120 < T < 240K)内,总均方位移total略微偏离预测的线性行为。QENS数据表明,这种偏差实际上与水合程度无关,是由于蛋白质扩散运动的部分开始。(C)在温度高于240K时,由于蛋白质扩散(大幅度)运动的开始,蛋白质柔韧性急剧变化。这种动力学转变明显依赖于水合作用,因为在干燥的PS II中受到强烈抑制。通过QENS监测到的蛋白质柔韧性的热激活开始与从Q(A)(-)到QB的电子传输效率随温度的增加严格相关(Garbers等人,(1998年)《生物化学》37卷,11399 - 11404页)。类似地,在干燥的PS II中,脱水导致蛋白质流动性冻结似乎是在相对湿度低于45%时Q(A)(-)被Q(B)再氧化受阻的原因(Kaminskaya等人,(2003年)《生物化学》42卷,8119 - 8132页)。如讨论部分所述,对水氧化复合物的反应也观察到了类似的效果。

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