700页
三聚体
化学
光系统I
单体
光系统II
光合作用
叶绿素a
光化学
叶绿素
植物
生物
生物化学
有机化学
聚合物
二聚体
作者
Orkun Çoruh,Anna Frank,Hideaki Tanaka,Akihiro Kawamoto,Eithar El-Mohsnawy,Takayuki Kato,Keiichi Namba,Christoph Gerle,Marc M. Nowaczyk,Genji Kurisu
标识
DOI:10.1038/s42003-021-01808-9
摘要
Abstract A high-resolution structure of trimeric cyanobacterial Photosystem I (PSI) from Thermosynechococcus elongatus was reported as the first atomic model of PSI almost 20 years ago. However, the monomeric PSI structure has not yet been reported despite long-standing interest in its structure and extensive spectroscopic characterization of the loss of red chlorophylls upon monomerization. Here, we describe the structure of monomeric PSI from Thermosynechococcus elongatus BP-1. Comparison with the trimer structure gave detailed insights into monomerization-induced changes in both the central trimerization domain and the peripheral regions of the complex. Monomerization-induced loss of red chlorophylls is assigned to a cluster of chlorophylls adjacent to PsaX. Based on our findings, we propose a role of PsaX in the stabilization of red chlorophylls and that lipids of the surrounding membrane present a major source of thermal energy for uphill excitation energy transfer from red chlorophylls to P700.
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