质体
电子流
质子
电子
质子泵
脱氢酶
生产(经济)
NAD+激酶
化学
酶
ATP酶
生物化学
叶绿体
光合作用
物理
基因
核物理学
宏观经济学
经济
作者
Deserah D. Strand,Nicholas Fisher,David Kramer
标识
DOI:10.1074/jbc.m116.770792
摘要
Cyclic electron flow around photosystem I (CEF) is critical for balancing the photosynthetic energy budget of the chloroplast by generating ATP without net production of NADPH. We demonstrate that the chloroplast NADPH dehydrogenase complex, a homolog to respiratory Complex I, pumps approximately two protons from the chloroplast stroma to the lumen per electron transferred from ferredoxin to plastoquinone, effectively increasing the efficiency of ATP production via CEF by 2-fold compared with CEF pathways involving non-proton-pumping plastoquinone reductases. By virtue of this proton-pumping stoichiometry, we hypothesize that NADPH dehydrogenase not only efficiently contributes to ATP production but operates near thermodynamic reversibility, with potentially important consequences for remediating mismatches in the thylakoid energy budget.
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