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内体运输和谷氨酸突触活性在 VPS35 D620N 突变敲入小鼠神经元中增加,并能抵抗 LRRK2 激酶抑制。

Endosomal traffic and glutamate synapse activity are increased in VPS35 D620N mutant knock-in mouse neurons, and resistant to LRRK2 kinase inhibition.

机构信息

Graduate Program in Neuroscience and Centre for Applied Neurogenetics, Djavad Mowafaghian Centre for Brain Health, University of British Columbia, Vancouver, Canada.

Montreal Neurological Institute-Hospital, McGill University, Montreal, Canada.

出版信息

Mol Brain. 2021 Sep 16;14(1):143. doi: 10.1186/s13041-021-00848-w.

Abstract

Vacuolar protein sorting 35 (VPS35) regulates neurotransmitter receptor recycling from endosomes. A missense mutation (D620N) in VPS35 leads to autosomal-dominant, late-onset Parkinson's disease. Here, we study the basic neurobiology of VPS35 and Parkinson's disease mutation effects in the D620N knock-in mouse and the effect of leucine-rich repeat kinase 2 (LRRK2) inhibition on synaptic phenotypes. The study was conducted using a VPS35 D620N knock-in mouse that expresses VPS35 at endogenous levels. Protein levels, phosphorylation states, and binding ratios in brain lysates from knock-in mice and wild-type littermates were assayed by co-immunoprecipitation and western blot. Dendritic protein co-localization, AMPA receptor surface expression, synapse density, and glutamatergic synapse activity in primary cortical cultures from knock-in and wild-type littermates were assayed using immunocytochemistry and whole-cell patch clamp electrophysiology. In brain tissue, we confirm VPS35 forms complexes with LRRK2 and AMPA-type glutamate receptor GluA1 subunits, in addition to NMDA-type glutamate receptor GluN1 subunits and D2-type dopamine receptors. Receptor and LRRK2 binding was unaltered in D620N knock-in mice, but we confirm the mutation results in reduced binding of VPS35 with WASH complex member FAM21, and increases phosphorylation of the LRRK2 kinase substrate Rab10, which is reversed by LRRK2 kinase inhibition in vivo. In cultured cortical neurons from knock-in mice, pRab10 is also increased, and reversed by LRRK2 inhibition. The mutation also results in increased endosomal recycling protein cluster density (VPS35-FAM21 co-clusters and Rab11 clusters), glutamate transmission, and GluA1 surface expression. LRRK2 kinase inhibition, which reversed Rab10 hyper-phosphorylation, did not rescue elevated glutamate release or surface GluA1 expression in knock-in neurons, but did alter AMPAR traffic in wild-type cells. The results improve our understanding of the cell biology of VPS35, and the consequences of the D620N mutation in developing neuronal networks. Together the data support a chronic synaptopathy model for latent neurodegeneration, providing phenotypes and candidate pathophysiological stresses that may drive eventual transition to late-stage parkinsonism in VPS35 PD. The study demonstrates the VPS35 mutation has effects that are independent of ongoing LRRK2 kinase activity, and that LRRK2 kinase inhibition alters basal physiology of glutamate synapses in vitro.

摘要

空泡蛋白分选 35(VPS35)调节神经递质受体从内体中的再循环。VPS35 中的错义突变(D620N)导致常染色体显性、晚发性帕金森病。在这里,我们研究了 VPS35 的基本神经生物学和 D620N 敲入小鼠中的帕金森病突变效应,以及富亮氨酸重复激酶 2(LRRK2)抑制对突触表型的影响。这项研究使用了一种表达内源性 VPS35 的 VPS35 D620N 敲入小鼠。通过共免疫沉淀和 Western blot 测定来自敲入小鼠和野生型同窝仔鼠脑裂解物中的蛋白水平、磷酸化状态和结合比率。使用免疫细胞化学和全细胞膜片钳电生理学测定来自敲入和野生型同窝仔鼠原代皮质培养物中的树突蛋白共定位、AMPA 型谷氨酸受体表面表达、突触密度和谷氨酸能突触活性。在脑组织中,我们证实 VPS35 与 LRRK2 和 AMPA 型谷氨酸受体 GluA1 亚基形成复合物,此外还与 NMDA 型谷氨酸受体 GluN1 亚基和 D2 型多巴胺受体形成复合物。在 D620N 敲入小鼠中,受体和 LRRK2 的结合没有改变,但我们证实该突变导致 VPS35 与 WASH 复合物成员 FAM21 的结合减少,并增加 LRRK2 激酶底物 Rab10 的磷酸化,体内 LRRK2 激酶抑制可逆转该磷酸化。在敲入小鼠的皮质神经元培养物中,pRab10 也增加,并被 LRRK2 抑制所逆转。该突变还导致内体再循环蛋白簇密度(VPS35-FAM21 共簇和 Rab11 簇)增加、谷氨酸传递和 GluA1 表面表达增加。LRRK2 激酶抑制,可逆转 Rab10 的过度磷酸化,但不能挽救敲入神经元中升高的谷氨酸释放或表面 GluA1 表达,但确实改变了野生型细胞中的 AMPAR 转运。该结果增进了我们对 VPS35 细胞生物学的理解,以及 D620N 突变在发育中的神经元网络中的后果。这些数据共同支持潜伏性神经退行性变的慢性突触病模型,提供了可能导致 VPS35 PD 后期发展为帕金森病的表型和候选病理生理应激。该研究表明,VPS35 突变的影响独立于持续的 LRRK2 激酶活性,而 LRRK2 激酶抑制改变了体外谷氨酸突触的基础生理学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/900f/8447518/f8235b4a5bda/13041_2021_848_Fig1_HTML.jpg

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