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从光捕获到光保护:植物主要天线复合体(LHCII)动态转换的结构基础

From light-harvesting to photoprotection: structural basis of the dynamic switch of the major antenna complex of plants (LHCII).

作者信息

Liguori Nicoletta, Periole Xavier, Marrink Siewert J, Croce Roberta

机构信息

Department of Physics and Astronomy and Institute for Lasers, Life and Biophotonics, Faculty of Sciences, De Boelelaan 1081, 1081 HV, Amsterdam, The Netherlands.

Groningen Biomolecular Sciences and Biotechnology Institute &Zernike Institute for Advanced Materials, University of Groningen, Nijenborgh 7, 9747 AG Groningen, The Netherlands.

出版信息

Sci Rep. 2015 Oct 23;5:15661. doi: 10.1038/srep15661.

Abstract

Light-Harvesting Complex II (LHCII) is largely responsible for light absorption and excitation energy transfer in plants in light-limiting conditions, while in high-light it participates in photoprotection. It is generally believed that LHCII can change its function by switching between different conformations. However, the underlying molecular picture has not been elucidated yet. The available crystal structures represent the quenched form of the complex, while solubilized LHCII has the properties of the unquenched state. To determine the structural changes involved in the switch and to identify potential quenching sites, we have explored the structural dynamics of LHCII, by performing a series of microsecond Molecular Dynamics simulations. We show that LHCII in the membrane differs substantially from the crystal and has the signatures that were experimentally associated with the light-harvesting state. Local conformational changes at the N-terminus and at the xanthophyll neoxanthin are found to strongly correlate with changes in the interactions energies of two putative quenching sites. In particular conformational disorder is observed at the terminal emitter resulting in large variations of the excitonic coupling strength of this chlorophyll pair. Our results strongly support the hypothesis that light-harvesting regulation in LHCII is coupled with structural changes.

摘要

捕光复合体II(LHCII)在光照受限条件下主要负责植物中的光吸收和激发能传递,而在高光条件下它参与光保护作用。一般认为,LHCII可以通过在不同构象之间切换来改变其功能。然而,其潜在的分子机制尚未阐明。现有的晶体结构代表了该复合体的淬灭形式,而溶解的LHCII具有未淬灭状态的性质。为了确定构象转换所涉及的结构变化并识别潜在的淬灭位点,我们通过进行一系列微秒级分子动力学模拟,探索了LHCII的结构动力学。我们发现,膜中的LHCII与晶体有很大不同,具有实验上与光捕获状态相关的特征。发现在N端和叶黄素新黄质处的局部构象变化与两个假定淬灭位点的相互作用能变化密切相关。特别是在末端发射体处观察到构象无序,导致该叶绿素对的激子耦合强度有很大变化。我们的结果有力地支持了LHCII中的光捕获调节与结构变化相关联的假设。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a46/4616226/396ad1de38ac/srep15661-f1.jpg

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