Redesign of the Chlamydomonas reinhardtii Q(B) binding niche reveals photosynthesis works in the absence of a driving force for Q(A)-Q(B) electron transfer

莱茵衣藻Q(B)结合位点的重新设计表明,即使没有Q(A)-Q(B)电子转移的驱动力,光合作用也能进行。

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Abstract

An in silico redesign of the secondary quinone electron acceptor (Q(B)) binding pocket of the D1 protein of Photosystem II (PSII) suggested that mutations of the F265 residue would affect atrazine binding. Chlamydomonas reinhardtii mutants F265T and F265S were produced to obtain atrazine-hypersensitive strains for biosensor applications, and the mutants were indeed found to be more atrazine-sensitive than the reference strain IL. Fluorescence and thermoluminescence data agree with a weak driving force and confirm slow electron transfer but cannot exclude an additional effect on protonation of the secondary quinone. Both mutants grow autotrophically, indicating that PSII requires strong light for optimal function, as was the case in the ancestral homodimeric reaction center.

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