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对定鞭藻光系统I-捕光超级复合体的组装和能量转移的结构见解。

Structural insights into the assembly and energy transfer of haptophyte photosystem I-light-harvesting supercomplex.

作者信息

He Fei-Yu, Zhao Long-Sheng, Qu Xin-Xiao, Li Kang, Guo Jian-Ping, Zhao Fang, Wang Ning, Qin Bing-Yue, Chen Xiu-Lan, Gao Jun, Liu Lu-Ning, Zhang Yu-Zhong

机构信息

Marine Biotechnology Research Center, State Key Laboratory of Microbial Technology, Shandong University, Qingdao 266237, China.

Ministry of Education Key Laboratory of Evolution and Marine Biodiversity, Frontiers Science Center for Deep Ocean Multispheres and Earth System & College of Marine Life Sciences, Ocean University of China, Qingdao 266003, China.

出版信息

Proc Natl Acad Sci U S A. 2024 Dec 10;121(50):e2413678121. doi: 10.1073/pnas.2413678121. Epub 2024 Dec 6.

Abstract

Haptophyta represents a major taxonomic group, with plastids derived from the primary plastids of red algae. Here, we elucidated the cryoelectron microscopy structure of the photosystem I-light-harvesting complex I (PSI-LHCI) supercomplex from the haptophyte . The PSI core comprises 12 subunits, which have evolved differently from red algae and cryptophytes by losing the PsaO subunit while incorporating the PsaK subunit, which is absent in diatoms and dinoflagellates. The PSI core is encircled by 22 fucoxanthin-chlorophyll /-binding light-harvesting antenna proteins (iFCPIs) that form a trilayered antenna arrangement. Moreover, a pigment-binding subunit, L, which has not been identified in any other previously characterized PSI-LHCI supercomplexes, was determined in PSI-iFCPI, presumably facilitating the interactions and energy transfer between peripheral iFCPIs and the PSI core. Calculation of excitation energy transfer rates by computational simulations revealed that the intricate pigment network formed within PSI-iFCPI ensures efficient transfer of excitation energy. Overall, our study provides a solid structural foundation for understanding the light-harvesting and energy transfer mechanisms in haptophyte PSI-iFCPI and provides insights into the evolution and structural variations of red-lineage PSI-LHCIs.

摘要

定鞭藻门是一个主要的分类类群,其质体起源于红藻的原始质体。在此,我们阐明了定鞭藻光合系统I-捕光复合体I(PSI-LHCI)超复合体的冷冻电镜结构。PSI核心由12个亚基组成,与红藻和隐藻相比,这些亚基的进化方式有所不同,通过丢失PsaO亚基并纳入硅藻和甲藻中不存在的PsaK亚基。PSI核心被22个岩藻黄质-叶绿素a/c结合捕光天线蛋白(iFCPIs)环绕,形成了三层天线排列。此外,在PSI-iFCPI中确定了一个在任何其他先前表征的PSI-LHCI超复合体中都未发现的色素结合亚基L,推测它有助于外周iFCPIs与PSI核心之间的相互作用和能量转移。通过计算模拟对激发能转移速率的计算表明,PSI-iFCPI内形成的复杂色素网络确保了激发能的高效转移。总体而言,我们的研究为理解定鞭藻PSI-iFCPI中的捕光和能量转移机制提供了坚实的结构基础,并为红系PSI-LHCIs的进化和结构变异提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d0ec/11648859/fcfedff55448/pnas.2413678121fig01.jpg

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