Ma Fei, Yu Long-Jiang, Wang-Otomo Zheng-Yu, van Grondelle Rienk
Department of Biophysics, Faculty of Sciences, VU University Amsterdam, De Boelelaan 1081, 1081 HV Amsterdam, The Netherlands.
Faculty of Science, Ibaraki University, Mito, Ibaraki 310-8512, Japan.
Biochim Biophys Acta. 2016 Apr;1857(4):408-14. doi: 10.1016/j.bbabio.2015.12.006. Epub 2015 Dec 15.
The native LH1-RC complex of the purple bacterium Thermochromatium (Tch.) tepidum has an ultra-red LH1-Qy absorption at 915nm, which can shift to 893 and 882nm by means of chemical modifications. These unique complexes are a good natural system to investigate the thermally activated energy transfer process, with the donor energies different while the other factors (such as the acceptor energy, special pair at 890nm, and the distance/relative orientation between the donor and acceptor) remain the same. The native B915-RC, B893-RC and B882-RC complexes, as well as the LH1-RC complex of Rhodobacter (Rba.) sphaeroides were studied by temperature-dependent time-resolved absorption spectroscopy. The energy transfer time constants, kET(-1), are 65, 45, 46 and 45ps at room temperature while 225, 58, 85, 33ps at 77K for the B915-RC, B893-RC, B882-RC and Rba. sphaeroides LH1-RC, respectively. The dependences of kET on temperature have different trends. The reorganization energies are determined to be 70, 290, 200 and 45cm(-1), respectively, by fitting kET vs temperature using Marcus equation. The activation energies are 200, 60, 115 and 20cm(-1), respectively. The influences of the structure (the arrangement of the 32 BChl a molecules) on kET are discussed based on these results, to reveal how the B915-RC complex accomplishes its energy transfer function with a large uphill energy of 290cm(-1).
嗜热栖热色杆菌(Tch.)的天然LH1 - RC复合物在915nm处有超红的LH1 - Qy吸收峰,通过化学修饰可分别移至893nm和882nm。这些独特的复合物是研究热激活能量转移过程的良好天然体系,供体能量不同,而其他因素(如受体能量、890nm处的特殊配对以及供体与受体之间的距离/相对取向)保持不变。利用温度依赖的时间分辨吸收光谱对嗜热栖热色杆菌的天然B915 - RC、B893 - RC和B882 - RC复合物以及球形红杆菌(Rba.)的LH1 - RC复合物进行了研究。在室温下,B915 - RC、B893 - RC、B882 - RC和球形红杆菌LH1 - RC的能量转移时间常数kET(-1)分别为65、45、46和45ps,而在77K时分别为225、58、85、33ps。kET对温度的依赖性呈现不同趋势。通过使用Marcus方程拟合kET与温度的关系,确定重组能分别为70、290、200和45cm(-1)。活化能分别为200、60、115和20cm(-1)。基于这些结果讨论了结构(32个BChl a分子的排列)对kET的影响,以揭示B915 - RC复合物如何以290cm(-1)的大上坡能量完成其能量转移功能。