Univ Paris-Sud, Orsay, France.
Mol Biol Evol. 2011 Jul;28(7):2063-75. doi: 10.1093/molbev/msr025. Epub 2011 Jan 27.
An F(1)F(O) ATP synthase in the inner mitochondrial membrane catalyzes the late steps of ATP production via the process of oxidative phosphorylation. A small protein subunit (subunit c or ATP9) of this enzyme shows a substantial genetic diversity, and its gene can be found in both the mitochondrion and/or nucleus. In a representative set of 26 species of fungi for which the genomes have been entirely sequenced, we found five Atp9 gene repartitions. The phylogenetic distribution of nuclear and mitochondrial Atp9 genes suggests that their evolution has included two independent transfers to the nucleus followed by several independent episodes of the loss of the mitochondrial and/or nuclear gene. Interestingly, we found that in Podospora anserina, subunit c is exclusively produced from two nuclear genes (PaAtp9-5 and PaAtp9-7), which display different expression profiles through the life cycle of the fungus. The PaAtp9-5 gene is specifically and strongly expressed in germinating ascospores, whereas PaAtp9-7 is mostly transcribed during sexual reproduction. Consistent with these observations, deletion of PaAtp9-5 is lethal, whereas PaAtp9-7 deletion strongly impairs ascospore production. The P. anserina PaAtp9-5 and PaAtp9-7 genes are therefore nonredundant. By swapping the 5' and 3' flanking regions between genes we demonstrated, however, that the PaAtp9 coding sequences are functionally interchangeable. These findings show that after transfer to the nucleus, the subunit c gene in Podospora became a key target for the modulation of cellular energy metabolism according to the requirements of the life cycle.
线粒体内膜中的 F(1)F(O) ATP 合酶通过氧化磷酸化过程催化 ATP 生成的后期步骤。该酶的一个小蛋白亚基(亚基 c 或 ATP9)显示出显著的遗传多样性,其基因存在于线粒体和/或核中。在代表 26 种真菌的一组真菌中,我们发现了 5 种 Atp9 基因分布。核和线粒体 Atp9 基因的系统发育分布表明,它们的进化包括两次独立转移到核,随后发生多次线粒体和/或核基因丢失事件。有趣的是,我们发现,在 Podospora anserina 中,亚基 c 仅由两个核基因(PaAtp9-5 和 PaAtp9-7)产生,这两个基因在真菌的生命周期中表现出不同的表达模式。PaAtp9-5 基因在萌发的子囊孢子中特异性和强烈表达,而 PaAtp9-7 在有性生殖中主要转录。这些观察结果与以下事实一致:删除 PaAtp9-5 是致命的,而 PaAtp9-7 缺失严重影响子囊孢子的产生。因此,Podospora 的 PaAtp9-5 和 PaAtp9-7 基因是不可或缺的。然而,通过交换基因之间的 5'和 3'侧翼区,我们证明了 PaAtp9 编码序列在功能上是可互换的。这些发现表明,在转移到核后,Podospora 中的亚基 c 基因成为根据生命周期要求调节细胞能量代谢的关键目标。