Structural basis for electron transport mechanism of complex I-like photosynthetic NAD(P)H dehydrogenase

Xiaowei Pan(Chinese Academy of Sciences), Duanfang Cao(Chinese Academy of Sciences), Fen Xie(Chinese Academy of Sciences), Fang Xu(Shanghai Institutes for Biological Sciences), Xiaodong Su(Chinese Academy of Sciences), Hualing Mi(Shanghai Institutes for Biological Sciences), Xinzheng Zhang(Institute of Biophysics), Mei Li(Chinese Academy of Sciences)
Nature Communications
January 30, 2020
Cited by 102Open Access
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Abstract

Abstract NAD(P)H dehydrogenase-like (NDH) complex NDH-1L of cyanobacteria plays a crucial role in cyclic electron flow (CEF) around photosystem I and respiration processes. NDH-1L couples the electron transport from ferredoxin (Fd) to plastoquinone (PQ) and proton pumping from cytoplasm to the lumen that drives the ATP production. NDH-1L-dependent CEF increases the ATP/NADPH ratio, and is therefore pivotal for oxygenic phototrophs to function under stress. Here we report two structures of NDH-1L from Thermosynechococcus elongatus BP-1, in complex with one Fd and an endogenous PQ, respectively. Our structures represent the complete model of cyanobacterial NDH-1L, revealing the binding manner of NDH-1L with Fd and PQ, as well as the structural elements crucial for proper functioning of the NDH-1L complex. Together, our data provides deep insights into the electron transport from Fd to PQ, and its coupling with proton translocation in NDH-1L.


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