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紫色细菌光捕获装置的结构与功能:从单分子到体内膜

The architecture and function of the light-harvesting apparatus of purple bacteria: from single molecules to in vivo membranes.

作者信息

Cogdell Richard J, Gall Andrew, Köhler Jürgen

机构信息

Biomedical Research Building, Institute of Biomedical and Life Sciences, University of Glasgow, Glasgow, UK.

出版信息

Q Rev Biophys. 2006 Aug;39(3):227-324. doi: 10.1017/S0033583506004434. Epub 2006 Oct 12.

Abstract

This review describes the structures of the two major integral membrane pigment complexes, the RC-LH1 'core' and LH2 complexes, which together make up the light-harvesting system present in typical purple photosynthetic bacteria. The antenna complexes serve to absorb incident solar radiation and to transfer it to the reaction centres, where it is used to 'power' the photosynthetic redox reaction and ultimately leads to the synthesis of ATP. Our current understanding of the biosynthesis and assembly of the LH and RC complexes is described, with special emphasis on the roles of the newly described bacteriophytochromes. Using both the structural information and that obtained from a wide variety of biophysical techniques, the details of each of the different energy-transfer reactions that occur, between the absorption of a photon and the charge separation in the RC, are described. Special emphasis is given to show how the use of single-molecule spectroscopy has provided a more detailed understanding of the molecular mechanisms involved in the energy-transfer processes. We have tried, with the help of an Appendix, to make the details of the quantum mechanics that are required to appreciate these molecular mechanisms, accessible to mathematically illiterate biologists. The elegance of the purple bacterial light-harvesting system lies in the way in which it has cleverly exploited quantum mechanics.

摘要

本综述描述了两种主要的整合膜色素复合物的结构,即RC-LH1“核心”复合物和LH2复合物,它们共同构成了典型紫色光合细菌中的光捕获系统。天线复合物用于吸收入射的太阳辐射并将其传递到反应中心,在那里它被用于“驱动”光合氧化还原反应,并最终导致ATP的合成。本文描述了我们目前对LH和RC复合物生物合成与组装的理解,特别强调了新发现的细菌光敏色素的作用。利用结构信息以及从各种生物物理技术中获得的信息,描述了从光子吸收到RC中电荷分离之间发生的每个不同能量转移反应的细节。特别强调展示了单分子光谱学的应用如何使我们对能量转移过程中涉及的分子机制有了更详细的理解。我们借助附录,试图让数学基础薄弱的生物学家也能理解理解这些分子机制所需的量子力学细节。紫色细菌光捕获系统的精妙之处在于它巧妙地利用量子力学的方式。

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