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Fluctuation Imaging of LRRK2 Reveals that the G2019S Mutation Alters Spatial and Membrane Dynamics

机译:LRRK2的波动成像显示G2019S突变会改变空间和膜动力学。

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摘要

Mutations within the gene are the most common genetic cause of autosomal and sporadic Parkinson’s disease (PD). LRRK2 is a large multidomain kinase that has reported interactions with several membrane proteins, including Rab and Endophilin, and has recently been proposed to function as a regulator of vesicular trafficking. It is unclear whether or how the spatiotemporal organization of the protein is altered due to LRRK2 activity. Therefore, we utilized fluctuation-based microscopy along with FLIM/FRET to examine the cellular properties and membrane recruitment of WT LRRK2-GFP (WT) and the PD mutant G2019S LRRK2-GFP (G2019S). We show that both variants can be separated into two distinct populations within the cytosol; a freely diffusing population associated with monomer/dimer species and a slower, likely vesicle-bound population. G2019S shows a significantly higher propensity to self-associate in both the cytosol and membrane regions when compared to WT. G2019S expression also resulted in increased hetero-interactions with Endophilin A1 (EndoA1), reduced cellular vesicles, and altered clathrin puncta dynamics associated with the plasma membrane. This finding was associated with a reduction in transferrin endocytosis in cells expressing G2019S, which indicates disruption of endocytic protein recruitment near the plasma membrane. Overall, this study uncovered multiple dynamic alterations to the LRRK2 protein as a result of the G2019S mutation—all of which could lead to neurodegeneration associated with PD.
机译:基因内的突变是常染色体和散发性帕金森氏病(PD)的最常见遗传原因。 LRRK2是一种大型的多结构域激酶,已报道与几种膜蛋白(包括Rab和Endophilin)相互作用,并且最近被提出充当水泡运输的调节剂。目前尚不清楚由于LRRK2活性是否改变蛋白质的时空组织。因此,我们利用基于波动的显微镜以及FLIM / FRET来检测WT LRRK2-GFP(WT)和PD突变体G2019S LRRK2-GFP(G2019S)的细胞特性和膜募集。我们表明,两个变体可以被分为两个不同的人口在细胞质内。与单体/二聚体物种相关的自由扩散种群和较慢的可能囊泡结合种群。与WT相比,G2019S在细胞质和膜区域均表现出明显更高的自缔合倾向。 G2019S表达还导致与Endophilin A1(EndoA1)的异质相互作用增加,细胞囊泡减少以及与质膜相关的网格蛋白点动力学改变。该发现与表达G2019S的细胞中转铁蛋白内吞作用的减少有关,这表明细胞质膜附近内吞蛋白募集受到破坏。总体而言,这项研究发现G2019S突变导致LRRK2蛋白发生了多个动态变化,所有这些都可能导致与PD相关的神经变性。

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