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叶绿体天线几何结构的研究:管状、片层状和螺旋型自聚集体。

Investigation on chlorosomal antenna geometries: tube, lamella and spiral-type self-aggregates.

作者信息

Linnanto Juha M, Korppi-Tommola Jouko E I

机构信息

Department of Chemistry, University of Jyväskylä, Jyväskylä, Finland.

出版信息

Photosynth Res. 2008 Jun;96(3):227-45. doi: 10.1007/s11120-008-9304-3. Epub 2008 Apr 29.

Abstract

Molecular mechanics calculations and exciton theory have been used to study pigment organization in chlorosomes of green bacteria. Single and double rod, multiple concentric rod, lamella, and Archimedean spiral macrostructures of bacteriochlorophyll c molecules were created and their spectral properties evaluated. The effects of length, width, diameter, and curvature of the macrostructures as well as orientations of monomeric transition dipole moment vectors on the spectral properties of the aggregates were studied. Calculated absorption, linear dichroism, and polarization dependent fluorescence-excitation spectra of the studied long macrostructures were practically identical, but circular dichroism spectra turned out to be very sensitive to geometry and monomeric transition dipole moment orientations of the aggregates. The simulations for long multiple rod and spiral-type macrostructures, observed in recent high-resolution electron microscopy images (Oostergetel et al., FEBS Lett 581:5435-5439, 2007) gave shapes of circular dichroism spectra observed experimentally for chlorosomes. It was shown that the ratio of total circular dichroism intensity to integrated absorption of the Q(y) transition is a good measure of degree of tubular structures in the chlorosomes. Calculations suggest that the broad Q(y) line width of chlorosomes of sulfur bacteria could be due to (1) different orientations of the transition moment vectors in multi-walled rod structures or (2) a variety of Bchl-aggregate structures in the chlorosomes.

摘要

分子力学计算和激子理论已被用于研究绿细菌叶绿体中色素的组织方式。构建了细菌叶绿素c分子的单杆和双杆、多个同心杆、薄片以及阿基米德螺旋宏观结构,并评估了它们的光谱特性。研究了宏观结构的长度、宽度、直径和曲率以及单体跃迁偶极矩矢量的方向对聚集体光谱特性的影响。所研究的长宏观结构的计算吸收光谱、线性二色性光谱和偏振相关荧光激发光谱实际上是相同的,但圆二色性光谱对聚集体的几何形状和单体跃迁偶极矩方向非常敏感。对最近高分辨率电子显微镜图像(Oostergetel等人,《欧洲生物化学学会联合会快报》581:5435 - 5439,2007)中观察到的长多杆和螺旋型宏观结构的模拟给出了叶绿体实验观察到的圆二色性光谱形状。结果表明,总圆二色性强度与Q(y)跃迁积分吸收的比值是衡量叶绿体中管状结构程度的一个良好指标。计算表明,硫细菌叶绿体的宽Q(y)线宽可能是由于(1)多壁杆状结构中跃迁矩矢量的不同取向,或(2)叶绿体中多种细菌叶绿素聚集体结构。

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