氧光合作用的历史、现状与展望

IF 7.2 2区 生物学 Q1 BIOPHYSICS Quarterly Reviews of Biophysics Pub Date : 2019-01-01 DOI:10.1017/S0033583518000112
Wolfgang Junge
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引用次数: 48

摘要

蓝藻和植物进行含氧光合作用。它们利用水来产生我们呼吸的大气中的氧气,利用二氧化碳来生产作为食物、饲料、纤维和燃料的生物质。本文回顾了近50年来对氧演化的结构和机理的认识。它回顾了投机性的概念和新的实验和理论技术提供的阶梯洞察力。在阳光的驱动下,光系统II氧化了水氧化催化剂Mn4CaO5(H2O)4簇。Mn3Ca呈立方体排列,一个Mn悬垂出来。通过在启动双氧形成之前四个氧化当量的积累,它将从水到双氧的四电子化学与光敏剂的单电子化学相匹配。因此,潜在有害的中间体在空间和时间上被封锁。催化团簇及其在光反应中心的伙伴的动力学特征已经被解决,在频域范围从声波到红外到x射线辐射,在时域从纳米到毫秒。分辨率为1.9 Å的x射线结构是可用的。甚至时间分辨的x射线结构已获得计时的反应周期的闪光和衍射与飞秒x射线脉冲。从两个水分子到双氧分子的末端反应包括四个电子、两个质子、一个双氧分子和一个水分子的转移。由于六个部分反应(4e-, 1H+, 1O2)在毫秒时间内的动力学奴役,严格的机理分析是具有挑战性的。目前,在实验和量子化学中,二级氧化反应中的过氧化物中间体一直是人们关注的焦点。智人依靠燃烧含氧光合作用的产物,无论是近代的还是化石的。人类的总能源消耗几乎占全球光合生产力的四分之一。如果平均用电量相当于人均用电量最高的国家之一,那么它是人均用电量最高的国家的四倍,并与总生产力相匹配。很明显,生物质的收获应该作为食物、饲料、纤维和平台化学品,而不是作为燃料。
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Oxygenic photosynthesis: history, status and perspective.

Cyanobacteria and plants carry out oxygenic photosynthesis. They use water to generate the atmospheric oxygen we breathe and carbon dioxide to produce the biomass serving as food, feed, fibre and fuel. This paper scans the emergence of structural and mechanistic understanding of oxygen evolution over the past 50 years. It reviews speculative concepts and the stepped insight provided by novel experimental and theoretical techniques. Driven by sunlight photosystem II oxidizes the catalyst of water oxidation, a hetero-metallic Mn4CaO5(H2O)4 cluster. Mn3Ca are arranged in cubanoid and one Mn dangles out. By accumulation of four oxidizing equivalents before initiating dioxygen formation it matches the four-electron chemistry from water to dioxygen to the one-electron chemistry of the photo-sensitizer. Potentially harmful intermediates are thereby occluded in space and time. Kinetic signatures of the catalytic cluster and its partners in the photo-reaction centre have been resolved, in the frequency domain ranging from acoustic waves via infra-red to X-ray radiation, and in the time domain from nano- to milli-seconds. X-ray structures to a resolution of 1.9 Å are available. Even time resolved X-ray structures have been obtained by clocking the reaction cycle by flashes of light and diffraction with femtosecond X-ray pulses. The terminal reaction cascade from two molecules of water to dioxygen involves the transfer of four electrons, two protons, one dioxygen and one water. A rigorous mechanistic analysis is challenging because of the kinetic enslaving at millisecond duration of six partial reactions (4e-, 1H+, 1O2). For the time being a peroxide-intermediate in the reaction cascade to dioxygen has been in focus, both experimentally and by quantum chemistry. Homo sapiens has relied on burning the products of oxygenic photosynthesis, recent and fossil. Mankind's total energy consumption amounts to almost one-fourth of the global photosynthetic productivity. If the average power consumption equalled one of those nations with the highest consumption per capita it was four times greater and matched the total productivity. It is obvious that biomass should be harvested for food, feed, fibre and platform chemicals rather than for fuel.

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来源期刊
Quarterly Reviews of Biophysics
Quarterly Reviews of Biophysics 生物-生物物理
CiteScore
12.90
自引率
1.60%
发文量
16
期刊介绍: Quarterly Reviews of Biophysics covers the field of experimental and computational biophysics. Experimental biophysics span across different physics-based measurements such as optical microscopy, super-resolution imaging, electron microscopy, X-ray and neutron diffraction, spectroscopy, calorimetry, thermodynamics and their integrated uses. Computational biophysics includes theory, simulations, bioinformatics and system analysis. These biophysical methodologies are used to discover the structure, function and physiology of biological systems in varying complexities from cells, organelles, membranes, protein-nucleic acid complexes, molecular machines to molecules. The majority of reviews published are invited from authors who have made significant contributions to the field, who give critical, readable and sometimes controversial accounts of recent progress and problems in their specialty. The journal has long-standing, worldwide reputation, demonstrated by its high ranking in the ISI Science Citation Index, as a forum for general and specialized communication between biophysicists working in different areas. Thematic issues are occasionally published.
期刊最新文献
Review of contemporary fluorescence correlation spectroscopy method in diverse solution studies. Optical scattering methods for the label-free analysis of single biomolecules. The development and applications of multidimensional biomolecular spectroscopy illustrated by photosynthetic light harvesting. Protonation constants of endo- and exogenous L-amino acids and their derivatives in aqueous and mixed solution: Unraveling molecular secrets. Solution-based biophysical characterization of conformation change in structure-switching aptamers.
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