Bazil Jason N, Buzzard Gregery T, Rundell Ann E
Purdue University, Weldon School of Biomedical Engineering, 206 S. Martin Jischke Drive, West Lafayette, IN 47907-2032, USA.
J Theor Biol. 2010 Aug 21;265(4):672-90. doi: 10.1016/j.jtbi.2010.06.001. Epub 2010 Jun 9.
Mitochondrial permeability transition (MPT) is a highly regulated complex phenomenon that is a type of ischemia/reperfusion injury that can lead to cell death and ultimately organ dysfunction. A novel population transition and detailed permeability transition pore regulation model were integrated with an existing bioenergetics model to describe MPT induction under a variety of conditions. The framework of the MPT induction model includes the potential states of the mitochondria (aggregated, orthodox and post-transition), their transitions from one state to another as well as their interaction with the extra-mitochondrial environment. The model encodes the three basic necessary conditions for MPT: a high calcium load, alkaline matrix pH and circumstances which favor de-energization. The MPT induction model was able to reproduce the expected bioenergetic trends observed in a population of mitochondria subjected to conditions that favor MPT. The model was corroborated and used to predict that MPT in an acidic environment is mitigated by an increase in activity of the mitochondrial potassium/hydrogen exchanger. The model was also used to present the beneficial impact of reducing the duration mitochondria spend in the orthodox state on preserving the extra-mitochondrial ATP levels. The model serves as a tool for investigators to use to understand the MPT induction phenomenon, explore alternative hypotheses for PTP regulation, as well as identify endogenous pharmacological targets and evaluate potential therapeutics for MPT mitigation.
线粒体通透性转换(MPT)是一种高度受调控的复杂现象,属于缺血/再灌注损伤的一种类型,可导致细胞死亡并最终引发器官功能障碍。将一种新的群体转换和详细的通透性转换孔调节模型与现有的生物能量学模型相结合,以描述在各种条件下的MPT诱导过程。MPT诱导模型的框架包括线粒体的潜在状态(聚集态、正常态和转换后态)、它们从一种状态到另一种状态的转变以及它们与线粒体外环境的相互作用。该模型编码了MPT的三个基本必要条件:高钙负荷、碱性基质pH值以及有利于去能化的环境。MPT诱导模型能够重现一群受到有利于MPT条件影响的线粒体中观察到的预期生物能量学趋势。该模型得到了证实,并用于预测酸性环境中的MPT会因线粒体钾/氢交换体活性的增加而减轻。该模型还用于展示减少线粒体在正常态所花费的时间对维持线粒体外ATP水平的有益影响。该模型可作为研究人员了解MPT诱导现象、探索PTP调节的替代假设、识别内源性药理学靶点以及评估减轻MPT的潜在治疗方法的工具。