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Fbxo7 and Pink1 play a reciprocal role in regulating their protein levels

机译:FBXO7和PINK1在调节其蛋白质水平时起着互核作用

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摘要

Pink1, Parkin and Fbxo7, three autosomal recessive familial genes of Parkinson’s disease (PD), have been implicated in mitophagy pathways for quality control and clearance of damaged mitochondria, but the interplay of these three genes still remains unclear. Here we present that Fbxo7 and Pink1 play a reciprocal role in the regulation of their protein levels. Regardless of the genotypes of Fbxo7, the wild type and the PD familial mutants of Fbxo7 stabilize the processed form of Pink1, supporting the prior study that none of the PD familial mutations in Fbxo7 have an effect on the interaction with Pink1. On the other hand, the interaction of Fbxo7 with Bag2 further facilitates its capability to stabilize Pink1. Intriguingly, the stabilization of Fbxo7 by Pink1 is specifically observed in substantial nigra pars compacta but striatum and cerebral cortex. Taken together, our findings support the notion that Fbxo7 as a scaffold protein has a chaperon activity in the stabilization of proteins.
机译:Pink1,Parkin和FBXO7,帕金森病(PD)的三个常染色体隐性家族性基因均涉及质量控制和损坏线粒体的清除的影响,但这三种基因的相互作用仍然尚不清楚。在这里,我们展示了FBXO7和PINK1在调节蛋白质水平的调节中发挥互惠作用。无论FBXO7的基因型,FBXO7的野生型和PD家族性突变体稳定加工形式的PINK1,支持先前的研究,FBXO7中没有任何PD家族性突变对与粉红色的相互作用有影响。另一方面,FBXO7与袋子2的相互作用进一步促进其稳定粉红色的能力。有趣的是,在基本的NIGRA分析的基础上特别观察到FBXO7的FBXO7稳定化,但纹状体和脑皮层。我们的发现在一起,支持FBXO7作为支架蛋白的概念在稳定蛋白质中具有伴侣活性。

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