Fehr Niklas, García-Rubio Inés, Jeschke Gunnar, Paulsen Harald
Department of General Botany, Johannes Gutenberg-University, 55128 Mainz, Germany.
Department of Physical Chemistry, ETH Zurich, Vladimir Prelog-Weg 2, CH-8093, Zürich, Switzerland.
Biochim Biophys Acta. 2016 Jun;1857(6):695-704. doi: 10.1016/j.bbabio.2016.04.004. Epub 2016 Apr 7.
Efficient energy transfer in the major light harvesting complex II (LHCII) of green plants is facilitated by the precise alignment of pigments due to the protein matrix they are bound to. Much is known about the import of the LHCII apoprotein into the chloroplast via the TOC/TIC system and its targeting to the thylakoid membrane but information is sparse about when and where the pigments are bound and how this is coordinated with protein folding. In vitro, the LHCII apoprotein spontaneously folds and binds its pigments if the detergent-solubilized protein is combined with a mixture of chlorophylls a and b and carotenoids. In the present work, we employed this approach to study apoprotein folding and pigment binding in a time-resolved manner by using pulsed electron paramagnetic resonance (EPR). Intra-molecular distances were measured before folding, after 255 ms and 40 s folding time in the absence of cryoprotectant, and in the fully folded and assembled LHCII. In accordance with earlier results, the most of the folding of the three membrane-spanning alpha helices precedes their apposition into the final tertiary structure. However, their formation follows different kinetics, partially extending into the final phase of LHCII formation during which much of the condensation of the pigment-protein structure occurs, presumably governed by the binding of chlorophyll b. A rough timetable is proposed to sort partial events into the LHCII formation process.
绿色植物主要捕光复合物II(LHCII)中的高效能量转移是由色素因其所结合的蛋白质基质而实现的精确排列所促进的。关于LHCII脱辅基蛋白通过TOC/TIC系统导入叶绿体及其靶向类囊体膜的过程,我们已经了解很多,但关于色素何时何地结合以及这如何与蛋白质折叠协调的信息却很少。在体外,如果将去污剂溶解的蛋白质与叶绿素a和b以及类胡萝卜素的混合物混合,LHCII脱辅基蛋白会自发折叠并结合其色素。在本研究中,我们采用这种方法,通过使用脉冲电子顺磁共振(EPR)以时间分辨的方式研究脱辅基蛋白折叠和色素结合。在没有冷冻保护剂的情况下,在折叠前、折叠255毫秒和40秒后以及在完全折叠和组装的LHCII中测量分子内距离。与早期结果一致,三个跨膜α螺旋的大部分折叠先于它们并列形成最终的三级结构。然而,它们的形成遵循不同的动力学,部分延伸到LHCII形成的最后阶段,在此期间色素 - 蛋白质结构发生大量凝聚,推测这是由叶绿素b的结合所控制的。本文提出了一个大致的时间表,以梳理LHCII形成过程中的部分事件。