Lamellar spacing of photosystem II membrane fragments upon dehydration studied by neutron membrane diffraction

J. Pieper, L. Rusevich, T. Hauß, G. Renger
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引用次数: 3

Abstract

Abstract The effect of dehydration on the lamellar spacing of photosystem II (PS II) membrane fragments from spinach has been investigated using neutron membrane diffraction at room temperature. The diffraction data reveal a major peak at a scattering vector Q of 0.049 Å−1 at a relative humidity (r.h.) of 90% corresponding to a repeat distance D of about 129 Å. Upon dehydration to 44% r.h., this peak shifts to about 0.060 Å−1 corresponding to a distance of 104.7±2.5 Å. Within experimental error, the latter repeat distance remains almost the same at hydration levels below 44% r.h. indicating that most of the hydration water is removed. This result is consistent with the earlier finding that hydration-induced conformational protein motions in PS II membrane fragments are observed above 44% r.h. and correlated with the onset electron transfer in PS II (Pieper et al. 2008, Eur. Biophys. J. 37: 657–663).
中子膜衍射法研究光系统II膜碎片脱水后片层间距
摘要采用中子膜衍射法研究了脱水对菠菜光系统II (PS II)膜片段片层间距的影响。衍射数据显示,在相对湿度(r.h.)为90%时,散射矢量Q为0.049 Å−1处有一个主峰,对应于重复距离D约为129 Å。当脱水至44% r.h.时,该峰移至约0.060 Å−1,对应距离为104.7±2.5 Å。在实验误差范围内,当水化水平低于44% r.h.时,后者的重复距离几乎保持不变,这表明大部分水化水被去除。这一结果与先前的发现一致,即水合作用诱导的PS II膜片段中的构象蛋白运动在44% r.h.以上被观察到,并且与PS II中开始的电子转移相关(Pieper et al. 2008, Eur)。Biophys。J. 37: 657-663)。
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