Faculty of Sciences, Vrije Universiteit Amsterdam, Amsterdam, The Netherlands.
Biophys J. 2011 Aug 17;101(4):1004-13. doi: 10.1016/j.bpj.2011.07.012.
We report a detailed description of the energy migration dynamics in the phycocyanin 645 (PC645) antenna complex from the photosynthetic alga Chroomonas CCMP270. Many of the cryptophyceae are known to populate greater depths than most other algal families, having developed a 99.5% efficient light-harvesting system. In this study, we used femtosecond time-resolved spectroscopy and global analysis to characterize the excited-state dynamics of PC645. Several different pump colors were selected to excite different fractions of the four phycobiliprotein pairs present in the complex. Measurements were also performed at cryogenic temperature to enhance spectral resolution and selectively promote downhill energy transfers. Upon excitation of the highest-energy bilins (dihydrobiliverdins), energy is transferred from the core of the complex to the periphery within 0.82 ps. Four bilins (mesobiliverdin (MBV) A/B and phycocyanobilins (PCB) 158C/D), which are responsible for the central band of the absorption spectrum, show concerted spectral dynamics. These chromophores show a biphasic decay with lifetimes of 0.6 ps (MBV) and 5-7 ps (PCB 158) to the lowest bilin pair (PCB 82C/D) absorbing around 650-657 nm. Within this lifetime of several picoseconds, the excitations reach the PCB 82 bilins on the two poles at the smaller sides of PC645. A slow 44-46 ps energy transfer step to the lowest-energy PCB 82 bilin concludes the dynamics.
我们报告了从光合藻类 Chroomonas CCMP270 中藻蓝蛋白 645 (PC645) 天线复合物的能量迁移动力学的详细描述。许多隐藻被认为比大多数其他藻类家族生活在更深的地方,它们已经开发出了 99.5%高效的光捕获系统。在这项研究中,我们使用飞秒时间分辨光谱和全局分析来描述 PC645 的激发态动力学。选择了几种不同的泵浦颜色来激发存在于复合物中的四种藻胆蛋白对中的不同部分。还在低温下进行了测量,以提高光谱分辨率并选择性地促进向下的能量转移。在激发最高能量的bilins(二氢藻胆红素)时,能量在 0.82 ps 内从复合物的核心转移到外围。负责吸收光谱中央带的四个bilins(mesobiliverdin (MBV) A/B 和藻蓝胆素 (PCB) 158C/D)显示出协同的光谱动力学。这些发色团显示出双相衰减,寿命为 0.6 ps(MBV)和 5-7 ps(PCB 158)到吸收约 650-657nm 的最低 bilin 对(PCB 82C/D)。在这几个皮秒的寿命内,激发到达了 PC645 较小侧面两极的 PCB 82 胆素。到最低能量 PCB 82 胆素的缓慢 44-46 ps 能量转移步骤结束了动力学过程。