Schmitt F-J, Trostmann I, Theiss C, Pieper J, Renger T, Fuesers J, Hubrich E H, Paulsen H, Eichler H J, Renger G
Institute of Optics and Atomic Physics, Berlin Institute of Technology, Berlin, Germany.
J Phys Chem B. 2008 Nov 6;112(44):13951-61. doi: 10.1021/jp8024057. Epub 2008 Oct 10.
The present study describes the fluorescence emission properties of recombinant water-soluble chlorophyll (Chl) protein (WSCP) complexes reconstituted with either Chl a or Chl b alone (Chl a only or Chl b only WSCP, respectively) or mixtures of both pigments at different stoichiometrical ratios. Detailed investigations were performed with time and space correlated ps fluorescence spectroscopy within the temperature range from 10 to 295 K. The following points were found: (a) The emission spectra at room temperature (295 K) are well characterized by bands with a dominating Lorentzian profile broadened due to phonon scattering and peak positions located at 677, 684 and 693 nm in the case of Chl a only WSCP and at 665, 675 and 689 nm for Chl b only WSCP. In addition, all spectra contain minor bands in the longer wavelength region. (b) The emission spectra at 10 K of samples suspended in buffer containing 50% glycerol are dominated by bands peaking at 668 nm for Chl b only WSCP and at 685 nm for Chl a only WSCP and samples reconstituted with mixtures of Chl a and Chl b. (c) At 10 K and in buffer with 50% glycerol the decay kinetics of WSCP samples with Chl a only are dominated by a component with a time constant of 6.2 (+/-0.2) ns at 685 nm while those of WSCP containing mixtures of Chl a and Chl b are characterized by a slightly shorter value of 6.0 (+/-0.2) ns. WSCP containing Chl b only exhibits a distinctly longer value of 7.0 (+/-0.3) ns at an emission wavelength of 668 nm. (d) The decay associated emission spectra at 10 K of all samples exhibit at least 3 decay components with time constants of 80-120 ps, 2-4 ns and 6-7 ns in 50% glycerol. These results are consistently described within the framework of our previously presented model (J. Phys. Chem. B 2007, 111, No. 46, 13325; J. Phys. Chem. B 2007, 111, No. 35, 10487) , for the structural motifs of chlorophyll binding to the tetrameric protein matrix of WSCP. It is shown that formation of strongly coupled open sandwich dimers does not lead to quenching of 1Chl a* or 1Chl b*.
本研究描述了单独用叶绿素a或叶绿素b重构的重组水溶性叶绿素(Chl)蛋白(WSCP)复合物(分别为仅叶绿素a或仅叶绿素b的WSCP)或两种色素以不同化学计量比混合的复合物的荧光发射特性。在10至295 K的温度范围内,利用时间和空间相关的皮秒荧光光谱进行了详细研究。发现以下几点:(a)室温(295 K)下的发射光谱具有明显特征,其谱带具有因声子散射而变宽的主导洛伦兹轮廓,仅叶绿素a的WSCP的峰值位置位于677、684和693 nm,仅叶绿素b的WSCP的峰值位置位于665、675和689 nm。此外,所有光谱在较长波长区域都包含次要谱带。(b)悬浮在含有50%甘油的缓冲液中的样品在10 K时的发射光谱以仅叶绿素b的WSCP在668 nm处、仅叶绿素a的WSCP以及用叶绿素a和叶绿素b混合物重构的样品在685 nm处的峰值谱带为主。(c)在10 K且在含有50%甘油的缓冲液中,仅含叶绿素a的WSCP样品在685 nm处的衰减动力学由一个时间常数为6.2(±0.2)ns的成分主导,而含有叶绿素a和叶绿素b混合物的WSCP样品的特征是时间常数略短,为6.0(±0.2)ns。仅含叶绿素b的WSCP在发射波长668 nm处表现出明显更长的7.0(±0.3)ns的值。(d)所有样品在10 K时的衰减相关发射光谱在50%甘油中至少表现出3个衰减成分,时间常数分别为80 - 120 ps、2 - 4 ns和6 - 7 ns。这些结果在我们之前提出的模型(《物理化学杂志B》2007年,111卷,第46期,13325页;《物理化学杂志B》2007年,111卷,第35期,10487页)框架内得到了一致描述,该模型涉及叶绿素与WSCP的四聚体蛋白基质结合的结构基序。结果表明,强耦合开放夹心二聚体的形成不会导致单重态叶绿素a或单重态叶绿素b的淬灭。