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首页> 外文期刊>Rejuvenation research >Expression of algal nuclear ATP synthase subunit 6 in human cells results in protein targeting to mitochondria but no assembly into ATP synthase.
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Expression of algal nuclear ATP synthase subunit 6 in human cells results in protein targeting to mitochondria but no assembly into ATP synthase.

机译:藻核ATP合酶亚基6在人细胞中的表达导致蛋白质靶向线粒体,但没有组装成ATP合酶。

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Artificial transfer of mitochondrial genes to the nucleus has implications for the understanding of mitochondrial function, evolution, and human health. Therefore, we created nuclear compatible versions of human subunit a (A6) of ATP synthase, linked to a mitochondrial targeting signal. Expression and targeting of human nuclear subunit a were compared to subunit a of Chlamydomonas reinhardtii, which naturally occurs in the nucleus. Algal subunit a was targeted to mitochondria more efficiently than human nuclear subunit a variants. However, there was no evidence of improved mitochondrial function in cultured cells; on the contrary, long-term expression of algal subunit a was associated with poor survival and intolerance of growth conditions that demand heavy reliance on oxidative phosphorylation. Analysis of enriched mitochondrial membrane fractions on native gels revealed a high-molecular- weight complex containing FLAG-tagged subunit a; however, this complex did not colocalize with ATP synthase. Thus,there was no evidence of assembly of algal subunit a into holoenzyme, nor did human nuclear subunit a colocalize with ATP synthase holoenzyme. In conclusion, obstacles remain to functional expression of mitochondrial genes transferred to the nucleus.
机译:线粒体基因向核的人工转移对理解线粒体功能,进化和人类健康具有重要意义。因此,我们创建了与线粒体靶向信号相连的ATP合酶人类亚基a(A6)的核兼容版本。将人类核亚基a的表达和靶向与莱茵衣藻(自然界中存在于核中)进行了比较。藻类亚基a比人类核亚基a变体更有效地靶向线粒体。但是,没有证据表明培养细胞的线粒体功能得到改善。相反,藻类亚基a的长期表达与较差的存活率和生长条件的不耐受性相关,该生长条件要求严重依赖于氧化磷酸化。对天然凝胶上富集的线粒体膜部分的分析表明,该高分子量复合物含有FLAG标记的亚基a;但是,该复合物未与ATP合酶共定位。因此,没有证据表明藻类亚基a组装成全酶,人类核亚基a也没有与ATP合酶全酶共定位。总之,线粒体基因转移到细胞核的功能性表达仍然存在障碍。

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