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首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >Loss of mitochondrial ATP synthase subunit beta (Atp2) alters mitochondrial and chloroplastic function and morphology in Chlamydomonas
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Loss of mitochondrial ATP synthase subunit beta (Atp2) alters mitochondrial and chloroplastic function and morphology in Chlamydomonas

机译:线粒体ATP合酶亚基β(Atp2)的丧失改变衣原体的线粒体和叶绿体功能及形态

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摘要

Mitochondrial F1FO ATP synthase (Complex V) catalyses ATP synthesis from ADP and inorganic phosphate using the proton-motive force generated by the substrate-driven electron transfer chain. In this work, we investigated the impact of the loss of activity of the mitochondrial enzyme in a photosynthetic organism. In this purpose, we inactivated by RNA interference the expression of the ATP2 gene, coding for the catalytic subunit β, in the green alga Chlamydomonas reinhardtii. We demonstrate that in the absence of β subunit, complex V is not assembled, respiratory rate is decreased by half and ATP synthesis coupled to the respiratory activity is fully impaired. Lack of ATP synthase also affects the morphology of mitochondria which are deprived of cristae. We also show that mutants are obligate phototrophs and that rearrangements of the photosynthetic apparatus occur in the chloroplast as a response to ATP synthase deficiency in mitochondria. Altogether, our results contribute to the understanding of the yet poorly studied bioenergetic interactions between organelles in photosynthetic organisms.
机译:线粒体F1FO ATP合酶(复合物V)利用由底物驱动的电子传输链产生的质子动力,催化ADP和无机磷酸盐合成ATP。在这项工作中,我们研究了光合生物中线粒体酶活性丧失的影响。为此,我们通过RNA干扰使绿藻莱茵衣藻中编码催化亚基β的ATP2基因的表达失活。我们证明,在没有β亚基的情况下,复合物V无法组装,呼吸频率降低一半,并且与呼吸活动相关的ATP合成也被完全削弱。 ATP合酶的缺乏也会影响线粒体的形态,而线粒体却没有cr裂。我们还表明,突变体是专性的光养菌,并且光合装置的重排发生在叶绿体中,作为对线粒体中ATP合酶缺乏的一种响应。总而言之,我们的结果有助于了解光合生物中细胞器之间的生物能相互作用,但研究尚未深入。

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