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三角褐指藻光系统I与质体蓝素的相互作用及其与天然细胞色素c6的比较:与丢失供体的重新结合

Interaction of photosystem I from Phaeodactylum tricornutum with plastocyanins as compared with its native cytochrome c6: Reunion with a lost donor.

作者信息

Bernal-Bayard Pilar, Pallara Chiara, Carmen Castell M, Molina-Heredia Fernando P, Fernández-Recio Juan, Hervás Manuel, Navarro José A

机构信息

Instituto de Bioquímica Vegetal y Fotosíntesis, Universidad de Sevilla and CSIC, Américo Vespucio 49, 41092 Sevilla, Spain.

Joint BSC-CRG-IRB Research Program in Computational Biology, Life Sciences Department, Barcelona Supercomputing Center, Barcelona 08034, Spain.

出版信息

Biochim Biophys Acta. 2015 Dec;1847(12):1549-59. doi: 10.1016/j.bbabio.2015.09.006. Epub 2015 Sep 25.

Abstract

In the Phaeodactylum tricornutum alga, as in most diatoms, cytochrome c6 is the only electron donor to photosystem I, and thus they lack plastocyanin as an alternative electron carrier. We have investigated, by using laser-flash absorption spectroscopy, the electron transfer to Phaeodactylum photosystem I from plastocyanins from cyanobacteria, green algae and plants, as compared with its own cytochrome c6. Diatom photosystem I is able to effectively react with eukaryotic acidic plastocyanins, although with less efficiency than with Phaeodactylum cytochrome c6. This efficiency, however, increases in some green alga plastocyanin mutants mimicking the electrostatics of the interaction site on the diatom cytochrome. In addition, the structure of the transient electron transfer complex between cytochrome c6 and photosystem I from Phaeodactylum has been analyzed by computational docking and compared to that of green lineage and mixed systems. Taking together, the results explain why the Phaeodactylum system shows a lower efficiency than the green systems, both in the formation of the properly arranged [cytochrome c6-photosystem I] complex and in the electron transfer itself.

摘要

在三角褐指藻中,与大多数硅藻一样,细胞色素c6是光系统I的唯一电子供体,因此它们缺乏质体蓝素作为替代电子载体。我们通过激光闪光吸收光谱法研究了蓝细菌、绿藻和植物的质体蓝素向三角褐指藻光系统I的电子转移,并将其与该藻自身的细胞色素c6进行了比较。硅藻光系统I能够与真核酸性质体蓝素有效反应,尽管效率低于与三角褐指藻细胞色素c6的反应效率。然而,在一些模拟硅藻细胞色素相互作用位点静电的绿藻质体蓝素突变体中,这种效率会提高。此外,通过计算对接分析了三角褐指藻细胞色素c6与光系统I之间瞬态电子转移复合物的结构,并与绿色谱系和混合系统的结构进行了比较。综合来看,这些结果解释了为什么三角褐指藻系统在形成正确排列的[细胞色素c6-光系统I]复合物以及电子转移本身方面,效率都低于绿色系统。

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