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解析植物光系统I的结构——生物化学至关重要。

Solving the structure of plant photosystem I--biochemistry is vital.

作者信息

Amunts Alexey, Ben-Shem Adam, Nelson Nathan

机构信息

Department of Biochemistry, The George S. Wise Faculty of Life Sciences, The Daniella Rich Institute for Structural Biology, Tel Aviv University, Tel Aviv 69978, Israel.

出版信息

Photochem Photobiol Sci. 2005 Dec;4(12):1011-5. doi: 10.1039/b506132f. Epub 2005 Sep 19.

Abstract

The recently determined structure of plant photosystem I (PSI) provides the first relatively high-resolution structural model of a supercomplex containing a reaction center and its peripheral antenna. Large amounts of highly purified PSI were required to get enough crystals amenable for structural determination by X-ray crystallography. In addition, a deep biochemical understanding of the large supercomplex was vital for achieving the goal. The stability of PSI was analyzed by sucrose gradient centrifugation and gel electrophoresis. Small amounts of LHCI were detached from PSI following a 12 day incubation under crystallization conditions. The interaction between the reaction center and the peripheral antenna of PSI (LHCI) as well as the interactions among the LHCI monomers are flexible. Nevertheless, the pure and homogeneous preparation of PSI allows for relatively tight crystal packing, which holds promise for obtaining atomic resolution in the future.

摘要

最近确定的植物光系统I(PSI)结构提供了首个包含反应中心及其外周天线的超复合物的相对高分辨率结构模型。需要大量高度纯化的PSI才能获得足够适合通过X射线晶体学进行结构测定的晶体。此外,对这个大型超复合物有深入的生化理解对于实现这一目标至关重要。通过蔗糖梯度离心和凝胶电泳分析了PSI的稳定性。在结晶条件下孵育12天后,少量的LHCI从PSI上脱离。PSI的反应中心与外周天线(LHCI)之间的相互作用以及LHCI单体之间的相互作用是灵活的。然而,PSI的纯净且均匀的制备使得晶体能够相对紧密地堆积,这为未来获得原子分辨率带来了希望。

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