Department of Biomedical Sciences, University of Padova, Padova, Italy.
Laboratory of Protein Crystallography, Institute for Protein Research, Osaka University, Suita, Japan.
Cell Death Differ. 2023 Aug;30(8):1869-1885. doi: 10.1038/s41418-023-01187-0. Epub 2023 Jul 17.
The mitochondrial permeability transition (mPT) describes a Ca-dependent and cyclophilin D (CypD)-facilitated increase of inner mitochondrial membrane permeability that allows diffusion of molecules up to 1.5 kDa in size. It is mediated by a non-selective channel, the mitochondrial permeability transition pore (mPTP). Sustained mPTP opening causes mitochondrial swelling, which ruptures the outer mitochondrial membrane leading to subsequent apoptotic and necrotic cell death, and is implicated in a range of pathologies. However, transient mPTP opening at various sub-conductance states may contribute several physiological roles such as alterations in mitochondrial bioenergetics and rapid Ca efflux. Since its discovery decades ago, intensive efforts have been made to identify the exact pore-forming structure of the mPT. Both the adenine nucleotide translocase (ANT) and, more recently, the mitochondrial FF (F)-ATP synthase dimers, monomers or c-subunit ring alone have been implicated. Here we share the insights of several key investigators with different perspectives who have pioneered mPT research. We critically assess proposed models for the molecular identity of the mPTP and the mechanisms underlying its opposing roles in the life and death of cells. We provide in-depth insights into current controversies, seeking to achieve a degree of consensus that will stimulate future innovative research into the nature and role of the mPTP.
线粒体通透性转变(mPT)描述了一种 Ca2+依赖性和亲环素 D(CypD)促进的线粒体内膜通透性增加,允许分子量高达 1.5 kDa 的分子扩散。它由一个非选择性通道,即线粒体通透性转变孔(mPTP)介导。持续的 mPTP 开放会导致线粒体肿胀,这会导致外膜破裂,从而导致随后的凋亡和坏死细胞死亡,并与多种病理学有关。然而,各种亚电导状态下的瞬时 mPTP 开放可能会发挥几种生理作用,例如改变线粒体生物能学和快速 Ca2+外流。自几十年前发现以来,人们一直在努力确定 mPT 的精确孔形成结构。腺嘌呤核苷酸转运体(ANT)和最近的线粒体 FF(F)-ATP 合酶二聚体、单体或 c 亚基环本身都被牵连在内。在这里,我们分享了几位具有不同视角的主要研究人员的见解,他们开创了 mPT 研究。我们批判性地评估了 mPTP 的分子身份的建议模型以及其在细胞生死中的相反作用的机制。我们深入探讨了当前的争议,寻求在一定程度上达成共识,以激发未来对 mPTP 的性质和作用的创新性研究。