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Key within-membrane residues and precursor dosage impact the allotopic expression of yeast subunit II of cytochrome c oxidase

机译:关键的膜内残基和前体剂量影响细胞色素C氧化酶的酵母亚基II的同位表达

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摘要

Experimentally relocating mitochondrial genes to the nucleus for functional expression (allotopic expression) is a challenging process. The high hydrophobicity of mitochondria-encoded proteins seems to be one of the main factors preventing this allotopic expression. We focused on subunit II of cytochrome c oxidase (Cox2) to study which modifications may enable or improve its allotopic expression in yeast. Cox2 can be imported from the cytosol into mitochondria in the presence of the W56R substitution, which decreases the protein hydrophobicity and allows partial respiratory rescue of a cox2-null strain. We show that the inclusion of a positive charge is more favorable than substitutions that only decrease the hydrophobicity. We also searched for other determinants enabling allotopic expression in yeast by examining the COX2 gene in organisms where it was transferred to the nucleus during evolution. We found that naturally occurring variations at within-membrane residues in the legume Glycine max Cox2 could enable yeast COX2 allotopic expression. We also evidence that directing high doses of allotopically synthesized Cox2 to mitochondria seems to be counterproductive because the subunit aggregates at the mitochondrial surface. Our findings are relevant to the design of allotopic expression strategies and contribute to the understanding of gene retention in organellar genomes.
机译:实验性地将线粒体基因重定位到核以进行功能性表达(异位表达)是一个具有挑战性的过程。线粒体编码蛋白的高疏水性似乎是阻止这种异位表达的主要因素之一。我们研究了细胞色素C氧化酶(Cox2)的亚基II,研究了哪些修饰可以启用或改善其在酵母中的异位表达。可以在W56R取代存在的情况下将Cox2从细胞质中导入线粒体,从而降低蛋白质的疏水性并允许部分cox2空菌株的呼吸挽救。我们表明,包含正电荷比仅降低疏水性的取代更有利。我们还通过检查在进化过程中将COX2基因转移到细胞核的生物中的COX2基因,搜索了能够在酵母中实现异位表达的其他决定因素。我们发现豆科植物大豆最大膜Cox2中膜内残基的自然发生变化可以使酵母COX2异位表达。我们还证明,将高剂量的异位合成Cox2定向到线粒体似乎适得其反,因为该亚基聚集在线粒体表面。我们的发现与异位表达策略的设计有关,并且有助于了解细胞器基因组中的基因保留。

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