线粒体
肿胀 的
生物物理学
ATP合酶
去极化
线粒体通透性转换孔
化学
磁导率
线粒体凋亡诱导通道
ATP-ADP转位酶
生物化学
膜电位
电子显微镜
离子通道
线粒体膜转运蛋白
三磷酸腺苷
电化学梯度
粒线体疾病
细胞生物学
钾通道
电子传输链
线粒体内膜
电生理学
显微镜
超微结构
生物
线粒体DNA
化学渗透
作者
Elizabeth A. Jonas,E. Margulis,Ava Yu,Nelli Mnatsakanyan
标识
DOI:10.1085/jgp.202614066
摘要
Early bioenergeticists who described the principles of chemiosmosis were aware that swelling of mitochondria was a likely and even frequent event, based on the large electrochemical gradient of K+ ions across the mitochondrial inner membrane. Swelling could be measured as a change in electron density by electron microscopy or by spectrophotometry in isolated mitochondria. The mitochondrial permeability transition (mPT) was originally described as an acute swelling change in mitochondria, later determined to be caused by the rapid opening of a pore (mPTP) defined biophysically and pharmacologically as a Ca2+- and voltage-dependent, cyclosporine A-sensitive large-conductance channel. The identity of the pore is controversial, but the ATP synthase c-subunit is a major candidate. In their breakthrough study (Akosah et al. https://doi.org/10.1085/jgp.202613979), they establish a novel dark-field imaging approach, allowing detection of mitochondrial swelling in living cells. Swollen mitochondria exhibit decreased light scattering and, therefore, microscopically "disappear." The cell-based imaging technique enables dissection of two separate processes, mitochondrial swelling, and depolarization. The authors demonstrate that K+ influx causes swelling but not immediate mitochondrial depolarization in wild-type cells, whereas in ATP synthase c-subunit knockout cells, Ca2+-dependent mitochondrial depolarization occurs without swelling, suggesting a lack of K+ influx. The results suggest that the ATP synthase c-subunit channel is the key member of a channel complex constituting the "swelling channel" of the mPTP.
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