Zorov Dmitry B, Juhaszova Magdalena, Yaniv Yael, Nuss H Bradley, Wang Su, Sollott Steven J
Laboratory of Cardiovascular Science, Gerontology Research Center, Box 13, Intramural Research Program, National Institute on Aging, NIH, 5600 Nathan Shock Drive, Baltimore, MD 21224-6825, USA.
Cardiovasc Res. 2009 Jul 15;83(2):213-25. doi: 10.1093/cvr/cvp151. Epub 2009 May 15.
The 'mitochondrial permeability transition', characterized by a sudden induced change of the inner mitochondrial membrane permeability for water as well as for small substances (</=1.5 kDa), has been known for three decades. Research interest in the entity responsible for this phenomenon, the 'mitochondrial permeability transition pore' (mPTP), has dramatically increased after demonstration that it plays a key role in the life and death decision in cells. Therefore, a better understanding of this phenomenon and its regulation by environmental stresses, kinase signalling, and pharmacological intervention is vital. The characterization of the molecular identity of the mPTP will allow identification of possible pharmacological targets and assist in drug design for its precise regulation. However, despite extensive research efforts, at this point the pore-forming core component(s) of the mPTP remain unidentified. Pivotal new genetic evidence has shown that components once believed to be core elements of the mPTP (namely mitochondrial adenine nucleotide translocator and cyclophilin D) are instead only mPTP regulators (or in the case of voltage-dependent anion channels, probably entirely dispensable). This review provides an update on the current state of knowledge regarding the regulation of the mPTP.
“线粒体通透性转换”,其特征是线粒体内膜对水以及小分子物质(分子量≤1.5 kDa)的通透性突然发生诱导性变化,这一现象已为人所知达三十年之久。在证实“线粒体通透性转换孔”(mPTP)在细胞生死抉择中起关键作用后,对该现象背后实体——“线粒体通透性转换孔”的研究兴趣急剧增加。因此,更好地理解这一现象及其受环境应激、激酶信号传导和药物干预的调控至关重要。对mPTP分子身份的表征将有助于确定可能的药物靶点,并辅助进行精确调控的药物设计。然而,尽管进行了广泛的研究,但目前mPTP的成孔核心成分仍未明确。重要的新遗传学证据表明,曾经被认为是mPTP核心元件的成分(即线粒体腺嘌呤核苷酸转位酶和亲环素D)实际上只是mPTP的调节剂(就电压依赖性阴离子通道而言,可能完全是可有可无的)。本综述提供了关于mPTP调控的当前知识状态的最新信息。