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Contribution of GTPase activity to LRRK2-associated Parkinson disease

机译:GTPase活性对与LRRK2相关的帕金森病的贡献

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摘要

Mutations in the leucine-rich repeat kinase 2 (LRRK2, PARK8, OMIM 607060) gene represent the most common known cause of hereditary Parkinson's disease (PD) with late-onset and dominant inheritance. LRRK2 protein is composed of multiple domains including two distinct enzymatic domains, a kinase and a Ras-of-complex (Roc) GTPase, connected by a C-terminal-of-Roc (COR) domain, and belongs to the ROCO protein family. Disease-causing mutations located in the kinase domain enhance kinase activity (i.e., G2019S) whereas mutations clustering within the Roc-COR tandem domain impair GTPase activity (i.e., R1441C/G and Y1699C). Familial LRRK2 mutations commonly induce neuronal toxicity that, at least for the frequent G2019S variant, is dependent on kinase activity. The contribution of GTPase activity to LRRK2-dependent neuronal toxicity is not yet clear. Therefore, both GTPase and kinase activity may be important for mediating neurodegeneration in PD due to familial LRRK2 mutations. At present, the physiological function of LRRK2 in the mammalian brain and the regulation of its enzymatic activity are incompletely understood. In this review, we focus on the GTPase domain of LRRK2 and discuss the recent advances in elucidating its function and its interplay with the kinase domain for the regulation of LRRK2 activity and toxicity. GTPase activity is an important feature of LRRK2 biology and pathophysiology and represents an underexplored yet potentially tractable therapeutic target for treating LRRK2-associated PD.
机译:富含亮氨酸的重复激酶2(LRRK2,PARK8,OMIM 607060)基因中的突变代表了遗传性帕金森氏病(PD)的最常见已知原因,其起病较晚且占优势。 LRRK2蛋白由多个结构域组成,包括两个不同的酶促结构域,一个激酶和一个Ras-complex(Roc)GTPase,通过R-Coc(COR)域连接,属于ROCO蛋白家族。位于激酶结构域中的致病突变会增强激酶活性(即G2019S),而在Roc-COR串联结构域内聚集的突变会损害GTPase活性(即R1441C / G和Y1699C)。家族性LRRK2突变通常会诱导神经元毒性,至少对于频繁的G2019S变体,依赖于激酶活性。 GTPase活性对LRRK2依赖性神经元毒性的贡献尚不清楚。因此,由于家族性LRRK2突变,GTPase和激酶活性对于介导PD的神经变性可能很重要。目前,尚未完全了解LRRK2在哺乳动物脑中的生理功能及其酶活性的调节。在这篇综述中,我们重点研究LRRK2的GTPase结构域,并讨论阐明其功能以及与激酶结构域相互作用以调节LRRK2活性和毒性的最新进展。 GTPase活性是LRRK2生物学和病理生理学的重要特征,代表了用于治疗与LRRK2相关的PD的尚未开发但可能易于治疗的治疗靶标。

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