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拟南芥中高度稳定的光系统II超复合物的生化与光谱表征

Biochemical and Spectroscopic Characterization of Highly Stable Photosystem II Supercomplexes from Arabidopsis.

作者信息

Crepin Aurelie, Santabarbara Stefano, Caffarri Stefano

机构信息

From the Aix Marseille Université, CEA, CNRS, BIAM, Laboratoire de Génétique et Biophysique des Plantes, Marseille 13009, France and.

the Istituto di Biofisica, Consiglio Nazionale delle Ricerche, 20133 Milan, Italy.

出版信息

J Biol Chem. 2016 Sep 2;291(36):19157-71. doi: 10.1074/jbc.M116.738054. Epub 2016 Jul 18.

Abstract

Photosystem II (PSII) is a large membrane supercomplex involved in the first step of oxygenic photosynthesis. It is organized as a dimer, with each monomer consisting of more than 20 subunits as well as several cofactors, including chlorophyll and carotenoid pigments, lipids, and ions. The isolation of stable and homogeneous PSII supercomplexes from plants has been a hindrance for their deep structural and functional characterization. In recent years, purification of complexes with different antenna sizes was achieved with mild detergent solubilization of photosynthetic membranes and fractionation on a sucrose gradient, but these preparations were only stable in the cold for a few hours. In this work, we present an improved protocol to obtain plant PSII supercomplexes that are stable for several hours/days at a wide range of temperatures and can be concentrated without degradation. Biochemical and spectroscopic properties of the purified PSII are presented, as well as a study of the complex solubility in the presence of salts. We also tested the impact of a large panel of detergents on PSII stability and found that very few are able to maintain the integrity of PSII. Such new PSII preparation opens the possibility of performing experiments that require room temperature conditions and/or high protein concentrations, and thus it will allow more detailed investigations into the structure and molecular mechanisms that underlie plant PSII function.

摘要

光系统II(PSII)是一种大型膜超复合物,参与了光合放氧的第一步。它以二聚体形式存在,每个单体由20多个亚基以及几种辅因子组成,包括叶绿素和类胡萝卜素色素、脂质和离子。从植物中分离出稳定且均一的PSII超复合物一直是深入进行其结构和功能表征的障碍。近年来,通过用温和的去污剂溶解光合膜并在蔗糖梯度上进行分级分离,实现了不同天线大小复合物的纯化,但这些制剂仅在低温下稳定几个小时。在这项工作中,我们提出了一种改进的方案来获得植物PSII超复合物,该复合物在很宽的温度范围内可稳定数小时/数天,并且可以浓缩而不降解。本文介绍了纯化的PSII的生化和光谱性质,以及对复合物在盐存在下的溶解度的研究。我们还测试了大量去污剂对PSII稳定性的影响,发现只有极少数能够维持PSII的完整性。这种新的PSII制剂为进行需要室温条件和/或高蛋白浓度的实验提供了可能性,因此将能够更详细地研究植物PSII功能背后的结构和分子机制。

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