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The ubiquitin E3 ligase parkin regulates the proapoptotic function of Bax

机译:泛素E3连接酶Parkin调节Bax的促凋亡功能

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摘要

Autosomal recessive loss-of-function mutations within the PARK2 gene functionally inactivate the E3 ubiquitin ligase parkin, resulting in neurodegeneration of catecholaminergic neurons and a familial form of Parkinson disease. Current evidence suggests both a mitochondrial function for parkin and a neuroprotective role, which may in fact be interrelated. The antiapoptotic effects of parkin have been widely reported, and may involve fundamental changes in the threshold for apoptotic cytochrome c release, but the substrate(s) involved in parkin dependent protection had not been identified. Here, we demonstrate the parkin-dependent ubiquitination of endogenous Bax comparing primary cultured neurons from WT and parkin KO mice and using multiple parkin-overexpressing cell culture systems. The direct ubiquitination of purified Bax was also observed in vitro following incubation with recombinant parkin. We found that parkin prevented basal and apoptotic stress-induced translocation of Bax to the mitochondria. Moreover, an engineered ubiquitination-resistant form of Bax retained its apoptotic function, but Bax KO cells complemented with lysine-mutant Bax did not manifest the antiapoptotic effects of parkin that were observed in cells expressing WT Bax. These data suggest that Bax is the primary substrate responsible for the antiapoptotic effects of parkin, and provide mechanistic insight into at least a subset of the mitochondrial effects of parkin.
机译:PARK2基因中的常染色体隐性功能丧失突变功能性地使E3泛素连接酶帕金失活,从而导致儿茶酚胺能神经元神经变性和帕金森氏病的家族形式。目前的证据表明,帕金森病的线粒体功能和神经保护作用都可能相互关联。 Parkin的抗凋亡作用已被广泛报道,并且可能涉及凋亡细胞色素C释放阈值的根本变化,但尚未确定参与Parkin依赖性保护的底物。在这里,我们证明了内源性Bax的Parkin依赖性泛素化,与野生型和parkin KO小鼠的原始培养神经元进行了比较,并使用了多个过表达Parkin的细胞培养系统。与重组Parkin孵育后,还可以在体外观察到纯化的Bax的直接泛素化。我们发现parkin阻止了基础和凋亡压力诱导的Bax向线粒体的移位。此外,工程改造的抗泛素化形式的Bax保留了其凋亡功能,但补充了赖氨酸突变型Bax的Bax KO细胞没有表现出在表达WT Bax的细胞中观察到的帕金蛋白的抗凋亡作用。这些数据表明,Bax是负责Parkin抗凋亡作用的主要底物,并提供了对Parkin线粒体作用的至少一个子集的机制了解。

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