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Polarized fluorescence measurements on ordered photosynthetic antenna complexes

机译:有序光合天线复合体的偏振荧光测量

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摘要

We have used a new and relatively easy approach to study the pigment-organization in chlorosomes from the photosynthetic bacterium Chloroflexus aurantiacus and in B800-850 antenna complexes of the photosynthetic purple bacterium Rhodobacter sphaeroides. These particles were embedded in compressed and uncompressed gels and the polarized fluorescence was determined in a 90° setup. Assuming both a rotational symmetric distribution of the particles in the gel and of the transition dipole moments in the particles, the order parameters <P2> and <P4>, describing the orientation of the symmetry axis of the particles with respect to the direction of gel expansion can be determined. Moreover, the direction parameters, describing the orientation of the absorption and emission dipole moments with respect to the symmetry axis of the particles can be obtained.The value of <P2> is essential for quantitative interpretation of linear dichroism measurements and usually it is estimated from theoretical approaches, which may lead to incorrect results. For the rod-like chlorosomes the value of <P2> appears to be the same as predicted by the theoretical approach of Ganago, A. O., M. V. Fok, I. A. Abdourakhmanov, A. A. Solov'ev, and Yu. E. Erokhin (1980. Mol. Biol. [Mosc.]. 14:381-389). The agreement with linear dichroism results, analyzed with this theoretical approach shows that the transition dipole moments are indeed in good approximation distributed in a rotationally symmetric way around the long axis of the chlorosomes. Moreover, it appears those BChl c molecules, which fluoresce, are oriented in the same way with respect to the symmetry axis as the rest of these pigments, with the dipole moments close to parallel to the long axis.The B800-850 complexes appear to orient like discs, whereas the transition dipoles of the BChl a 800- and 850-nm bands are oriented almost perpendicular to the symmetry axis. These findings are in agreement with the minimal model for these complexes proposed by Kramer, H. J. M., R. van Grondelle, C. N. Hunter, W. H. J. Westerhuis, and J. Amesz (1984. Biochim. Biophys. Acta. 156-165).The amount of orientation of the particles appears to vary for different gels and it is lower than predicted by the theory of Ganago et al., showing that application of their approach for these particles leads to incorrect interpretations.The approach that is used in this study allows determination of orientations of those dipole moments, which transfer their excitation energy to the fluorescing species, in contrast to linear dichroism measurements, where the orientations of all absorbing dipole moments are studied. For the polarized fluorescence measurements, the amount of orientation of the particles is determined experimentally, whereas for linear dichroism this amount has to be estimated from theoretical models. The value of <P2> that can be determined from the fluorescence measurements can, however, also be used for a quantitative interpretation of the linear dichroism results.
机译:我们已经使用了一种相对容易的新方法来研究光合作用细菌桔小球藻的叶绿体和光合作用紫色细菌球形红球菌的B800-850天线复合物中的色素组织。将这些颗粒包埋在压缩和未压缩的凝胶中,并以90°设置测定偏振荧光。假设颗粒在凝胶中的旋转对称分布以及颗粒中的跃迁偶极矩,则顺序参数描述了颗粒对称轴相对于凝胶方向的取向扩展可以确定。此外,可以获得描述吸收和发射偶极矩相对于粒子对称轴的方向的方向参数。的值对于线性二向色性测量的定量解释必不可少,通常从理论方法,可能会导致错误的结果。对于棒状的脂质体,的值似乎与Ganago,A. O.,M. V. Fok,I. A. Abdourakhmanov,A. A. Solov'ev和Yu的理论方法所预测的相同。 E.Erokhin(1980.分子生物学[Mosc。]。14:381-389)。用这种理论方法分析的线性二向色性结果的一致性表明,跃迁偶极矩的确确实很好地近似地围绕着脂质体的长轴以旋转对称的方式分布。此外,似乎发荧光的BChl c分子在对称轴上的取向与其余这些颜料相同,偶极矩接近平行于长轴.B800-850络合物似乎像圆盘一样取向,而BChl 800和850 nm波段的跃迁偶极几乎垂直于对称轴。这些发现与Kramer,HJM,R.van Grondelle,CN Hunter,WHJ Westerhuis和J.Amesz(1984.Biochim.Biophys.Acta.156-165)提出的针对这些复合物的最小模型是一致的。对于不同的凝胶,颗粒的方向似乎有所不同,并且比Ganago等人的理论预测的要低,这表明对这些颗粒应用其方法会导致错误的解释。本研究中使用的方法可以确定与线性二色性测量相反,这些偶极矩的取向将其激发能量转移到发荧光的物种,线性二色性测量研究了所有吸收偶极矩的取向。对于偏振荧光测量,颗粒的取向量是通过实验确定的,而对于线性二向色性,则必须根据理论模型进行估算。然而,可以由荧光测量确定的的值也可以用于线性二色性结果的定量解释。

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