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Markov Modelling of Mitochondrial BAK Activation Kinetics during Apoptosis

机译:凋亡过程中线粒体BAK活化动力学的马尔可夫模型

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The molecular mechanism underlying mitochondrial BAK activation during apoptosis remains highly controversial. Two seemingly conflicting models known as the agonism model and the de-repressor model have been proposed. In the agonism model, BAK requires activator BH3 only proteins to initiate a series of events that results in cell apoptosis. In the de-repressor model the antagonism of pro-survival BCL-2 family proteins alone is sufficient for BAK activation kinetics to promote apoptosis. To gain a better understanding of the kinetic implications of these models and reconcile these opposing, but highly evidence-based theories, we have formulated Markov chain models which capture the molecular mechanisms underlying both the agonism and de-repressor models. Our results indicate that both pure agonism and dissociation are mutually exclusive mechanisms capable of initiating mitochondrial apoptosis by BAK activation.
机译:凋亡过程中线粒体BAK活化的分子机制仍然存在很大争议。已经提出了两个看似矛盾的模型,称为激动模型和去阻遏剂模型。在激动模型中,BAK只需要激活蛋白BH3来引发一系列导致细胞凋亡的事件。在去阻遏物模型中,单独的生存前BCL-2家族蛋白的拮抗作用足以使BAK活化动力学促进细胞凋亡。为了更好地理解这些模型的动力学含义并调和这些相反但基于证据的理论,我们制定了马尔可夫链模型,该模型捕获了激动剂模型和抑制因子模型的分子机制。我们的结果表明,纯激动剂和解离都是能够通过BAK激活来启动线粒体凋亡的互斥机制。

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