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Genetic dissection reveals that Akt is the critical kinase downstream of LRRK2 to phosphorylate and inhibit FOXO1, and promotes neuron survival

机译:遗传解剖揭示,Akt是LRRK2下游的关键激酶,可磷酸化并抑制FOXO1,并促进神经元存活

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Leucine-rich repeat kinase2(LRRK2) isacomplex kinaseandmutations inLRRK2are perhapsthemostcommon genetic cause of Parkinson's disease (PD). However, the identification of the normal physiological function of LRRK2 remains elusive. Here, we show that LRRK2 protects neurons against apoptosis induced by the Drosophila genes grim, hid and reaper. Genetic dissection reveals that Akt is the critical downstream kinase of LRRK2 that phosphorylates and inhibits FOXO1, and thereby promotes survival. Like human LRRK2, Drosophila lrrk also promotes neuron survival; lrrk loss-of-function mutant displays reduced cell numbers, which can be rescued by LRRK2 expression. Importantly, LRRK2 G2019S and LRRK2 R1441C mutants impair the ability of LRRK2 to activate Akt, and fail to prevent apoptotic death. Ectopic expression of a constitutive active form of Akt hence is sufficient to rescue this functional deficit. These data establish that LRRK2 can protect neurons from apoptotic insult through a survival pathway in which LRRK2 signals to activate Akt, and then inhibits FOXO1. These results might indicate that a LRRK-Akt therapeutic pathway to promote neuron survival and to prevent neurodegeneration in Parkinson's disease.
机译:富含亮氨酸的重复激酶2(LRRK2)是一个复杂的激酶,LRRK2中的突变可能是帕金森氏病(PD)的最常见遗传原因。但是,LRRK2正常生理功能的鉴定仍然很困难。在这里,我们表明LRRK2保护神经元免受果蝇基因严峻,隐藏和收割者诱导的凋亡。遗传解剖表明,Akt是LRRK2的关键下游激酶,可磷酸化并抑制FOXO1,从而促进存活。像人类LRRK2一样,果蝇lrrk也促进神经元存活。 lrrk功能丧失的突变体显示细胞数量减少,可以通过LRRK2表达进行挽救。重要的是,LRRK2 G2019S和LRRK2 R1441C突变体会削弱LRRK2激活Akt的能力,并且无法防止细胞凋亡。因此,Akt组成型活性形式的异位表达足以挽救该功能缺陷。这些数据表明,LRRK2可以通过生存途径保护神经元免受凋亡损害,在该途径中,LRRK2发出信号激活Akt,然后抑制FOXO1。这些结果可能表明LRRK-Akt治疗途径可促进神经元存活并预防帕金森氏病中的神经变性。

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