Azadi-Chegeni Fatemeh, Ward Meaghan E, Perin Giorgio, Simionato Diana, Morosinotto Tomas, Baldus Marc, Pandit Anjali
Department of Solid-state NMR, Leiden Institute of Chemistry, Gorlaeus Laboratories, Leiden University, Leiden, the Netherlands.
Department of NMR Spectroscopy, Bijvoet Center for Biomolecular Research, Utrecht University, Utrecht, the Netherlands.
Biophys J. 2021 Jan 19;120(2):270-283. doi: 10.1016/j.bpj.2020.11.2265. Epub 2020 Dec 5.
Photosynthetic light-harvesting complexes (LHCs) of higher plants, moss, and green algae can undergo dynamic conformational transitions, which have been correlated to their ability to adapt to fluctuations in the light environment. Herein, we demonstrate the application of solid-state NMR spectroscopy on native, heterogeneous thylakoid membranes of Chlamydomonas reinhardtii (Cr) and on Cr light-harvesting complex II (LHCII) in thylakoid lipid bilayers to detect LHCII conformational dynamics in its native membrane environment. We show that membrane-reconstituted LHCII contains selective sites that undergo fast, large-amplitude motions, including the phytol tails of two chlorophylls. Protein plasticity is also observed in the N-terminal stromal loop and in protein fragments facing the lumen, involving sites that stabilize the xanthophyll-cycle carotenoid violaxanthin and the two luteins. The results report on the intrinsic flexibility of LHCII pigment-protein complexes in a membrane environment, revealing putative sites for conformational switching. In thylakoid membranes, fast dynamics of protein and pigment sites is significantly reduced, which suggests that in their native organelle membranes, LHCII complexes are locked in specific conformational states.
高等植物、苔藓和绿藻的光合捕光复合体(LHCs)能够发生动态构象转变,这与其适应光照环境波动的能力相关。在此,我们展示了固态核磁共振波谱技术在莱茵衣藻(Cr)天然的、异质类囊体膜以及类囊体脂质双层中的Cr捕光复合体II(LHCII)上的应用,以检测LHCII在其天然膜环境中的构象动力学。我们发现,膜重构的LHCII包含经历快速、大幅度运动的选择性位点,包括两个叶绿素的植醇尾。在N端基质环和面向内腔的蛋白质片段中也观察到蛋白质可塑性,涉及稳定叶黄素循环类胡萝卜素紫黄质和两个叶黄素的位点。这些结果揭示了LHCII色素 - 蛋白质复合体在膜环境中的内在灵活性,揭示了构象转换的假定位点。在类囊体膜中,蛋白质和色素位点的快速动力学显著降低,这表明在其天然细胞器膜中,LHCII复合体被锁定在特定的构象状态。