Kvíčalová Zuzana, Alster Jan, Hofmann Eckhard, Khoroshyy Petro, Litvín Radek, Bína David, Polívka Tomáš, Pšenčík Jakub
Department of Chemical Physics and Optics, Faculty of Mathematics and Physics, Charles University in Prague, Prague CZ-12116, Czech Republic.
Biophysics, Department of Biology and Biotechnology, Ruhr-University Bochum, D-44780 Bochum, Germany.
Biochim Biophys Acta. 2016 Apr;1857(4):341-9. doi: 10.1016/j.bbabio.2016.01.008. Epub 2016 Jan 19.
Room temperature transient absorption spectroscopy with nanosecond resolution was used to study quenching of the chlorophyll triplet states by carotenoids in two light-harvesting complexes of the dinoflagellate Amphidinium carterae: the water soluble peridinin-chlorophyll protein complex and intrinsic, membrane chlorophyll a-chlorophyll c2-peridinin protein complex. The combined study of the two complexes facilitated interpretation of a rather complicated relaxation observed in the intrinsic complex. While a single carotenoid triplet state was resolved in the peridinin-chlorophyll protein complex, evidence of at least two different carotenoid triplets was obtained for the intrinsic light-harvesting complex. Most probably, each of these carotenoids protects different chlorophylls. In both complexes the quenching of the chlorophyll triplet states by carotenoids occurs with a very high efficiency (100%), and with transfer times estimated to be in the order of 0.1ns or even faster. The triplet-triplet energy transfer is thus much faster than formation of the chlorophyll triplet states by intersystem crossing. Since the triplet states of chlorophylls are formed during the whole lifetime of their singlet states, the apparent lifetimes of both states are the same, and observed to be equal to the carotenoid triplet state rise time (5ns).
采用具有纳秒分辨率的室温瞬态吸收光谱法,研究了海洋双鞭毛虫卡特亚扁藻(Amphidinium carterae)的两种光捕获复合物中类胡萝卜素对叶绿素三重态的猝灭作用:水溶性多甲藻素 - 叶绿素蛋白复合物以及内在的膜叶绿素a - 叶绿素c2 - 多甲藻素蛋白复合物。对这两种复合物的联合研究有助于解释在内在复合物中观察到的相当复杂的弛豫现象。在多甲藻素 - 叶绿素蛋白复合物中分辨出单一的类胡萝卜素三重态,而对于内在光捕获复合物则获得了至少两种不同类胡萝卜素三重态的证据。很可能,这些类胡萝卜素中的每一种都保护不同的叶绿素。在这两种复合物中,类胡萝卜素对叶绿素三重态的猝灭效率都非常高(约100%),转移时间估计在0.1纳秒或更快的量级。因此,三重态 - 三重态能量转移比通过系间窜越形成叶绿素三重态要快得多。由于叶绿素的三重态是在其单重态的整个寿命期间形成的,所以这两种状态的表观寿命相同,并且观察到等于类胡萝卜素三重态的上升时间(约5纳秒)。