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Tetratricopeptide repeat protein protects photosystem I from oxidative disruption during assembly

机译:四肽重复蛋白在组装过程中保护光系统I免受氧化破坏

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摘要

A Chlamydomonas reinhardtii mutant lacking CGL71, a thylakoid membrane protein previously shown to be involved in photosystem I (PSI) accumulation, exhibited photosensitivity and highly reduced abundance of PSI under photoheterotrophic conditions. Remarkably, the PSI content of this mutant declined to nearly undetectable levels under dark, oxic conditions, demonstrating that reduced PSI accumulation in the mutant is not strictly the result of photodamage. Furthermore, PSI returns to nearly wild-type levels when the O2 concentration in the medium is lowered. Overall, our results suggest that the accumulation of PSI in the mutant correlates with the redox state of the stroma rather than photodamage and that CGL71 functions under atmospheric O2 conditions to allow stable assembly of PSI. These findings may reflect the history of the Earth’s atmosphere as it transitioned from anoxic to highly oxic (1–2 billion years ago), a change that required organisms to evolve mechanisms to assist in the assembly and stability of proteins or complexes with O2-sensitive cofactors.
机译:缺乏CGL71的衣藻衣藻突变体(一种类囊体膜蛋白,以前显示参与光系统I(PSI)的积累)在光异养条件下表现出光敏性和PSI的丰度大大降低。值得注意的是,该突变体的PSI含量在黑暗,有氧条件下下降到几乎不可检测的水平,这表明突变体中PSI积累的降低并非严格是光损伤的结果。此外,当培养基中的O2浓度降低时,PSI几乎恢复为野生型水平。总体而言,我们的结果表明,突变体中PSI的积累与基质的氧化还原状态相关,而不是与光损伤相关,并且CGL71在大气O2条件下起作用以允许PSI稳定组装。这些发现可能反映了地球大气从缺氧转变为高氧(1-2亿年前)的历史,这一变化要求生物体进化出机制来协助对O2敏感的蛋白质或复合物的组装和稳定性辅助因子。

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