Grudzinski Wojciech, Janik Ewa, Bednarska Joanna, Welc Renata, Zubik Monika, Sowinski Karol, Luchowski Rafal, Gruszecki Wieslaw I
Department of Biophysics, Institute of Physics, Maria Curie-Skłodowska University , 20-033 Lublin, Poland.
Department of Cell Biology, Institute of Biology and Biochemistry, Maria Curie-Sklodowska University , ul. Akademicka 19, 20-033 Lublin, Poland.
J Phys Chem B. 2016 May 19;120(19):4373-82. doi: 10.1021/acs.jpcb.6b01641. Epub 2016 May 10.
Resonance Raman analysis of the photosynthetic complex LHCII, immobilized in a polyacrylamide gel, reveals that one of the protein-bound xanthophylls, assigned as violaxanthin, undergoes light-induced molecular reconfiguration. The phototransformation is selectively observed in a trimeric structure of the complex and is associated with a pronounced twisting and a trans-cis molecular configuration change of the polyene chain of the carotenoid. Among several spectral effects accompanying the reconfiguration there are ones indicating a carotenoid triplet state. Possible physiological importance of the light-induced violaxanthin reconfiguration as a mechanism associated with making the pigment available for enzymatic deepoxidation in the xanthophyll cycle is discussed.
对固定在聚丙烯酰胺凝胶中的光合复合物LHCII进行共振拉曼分析,结果表明,一种被指定为紫黄质的与蛋白质结合的叶黄素会发生光诱导分子重排。在该复合物的三聚体结构中选择性地观察到了这种光转化,并且它与类胡萝卜素多烯链的明显扭曲和反式-顺式分子构型变化有关。在重排伴随的几种光谱效应中,有一些表明存在类胡萝卜素三重态。文中讨论了光诱导紫黄质重排作为一种与使色素可用于叶黄素循环中的酶促脱环氧化作用相关的机制的可能生理重要性。