Departamento de Biología Molecular, Centro de Biología Molecular Severo Ochoa, Consejo Superior de Investigaciones Científicas-Universidad Autónoma de Madrid (CSIC-UAM), 28049, Madrid, Spain.
Centro de Investigación Biomédica en Red de Enfermedades Raras (CIBERER) ISCIII, Madrid, Spain.
Commun Biol. 2023 Aug 12;6(1):836. doi: 10.1038/s42003-023-05214-1.
The coexistence of two pools of ATP synthase in mitochondria has been largely neglected despite in vitro indications for the existence of reversible active/inactive state transitions in the F1-domain of the enzyme. Herein, using cells and mitochondria from mouse tissues, we demonstrate the existence in vivo of two pools of ATP synthase: one active, the other IF1-bound inactive. IF1 is required for oligomerization and inactivation of ATP synthase and for proper cristae formation. Immunoelectron microscopy shows the co-distribution of IF1 and ATP synthase, placing the inactive "sluggish" ATP synthase preferentially at cristae tips. The intramitochondrial distribution of IF1 correlates with cristae microdomains of high membrane potential, partially explaining its heterogeneous distribution. These findings support that IF1 is the in vivo regulator of the active/inactive state transitions of the ATP synthase and suggest that local regulation of IF1-ATP synthase interactions is essential to activate the sluggish ATP synthase.
尽管有体外实验表明酶的 F1 结构域中存在可逆的活性/无活性状态转变,但线粒体中两种 ATP 合酶池的共存在很大程度上被忽视了。本文使用来自小鼠组织的细胞和线粒体,证明了体内存在两种 ATP 合酶池:一种是活跃的,另一种是 IF1 结合的无活性的。IF1 对于 ATP 合酶的寡聚化和失活以及嵴的正确形成是必需的。免疫电子显微镜显示 IF1 和 ATP 合酶的共分布,将无活性的“缓慢”ATP 合酶优先定位在嵴顶。IF1 的线粒体内部分布与高膜电位的嵴微区相关,部分解释了其不均匀的分布。这些发现支持 IF1 是 ATP 合酶活性/无活性状态转变的体内调节剂,并表明 IF1-ATP 合酶相互作用的局部调节对于激活缓慢的 ATP 合酶至关重要。