Broad proteomics analysis of seeding-induced aggregation of α-synuclein in M83 neurons reveals remodeling of proteostasis mechanisms that might contribute to Parkinson's disease pathogenesis

对 M83 神经元中种子诱导的 α-突触核蛋白聚集进行广泛的蛋白质组学分析,揭示了可能导致帕金森病发病机制的蛋白质稳态机制重塑

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作者:Casey J Lumpkin #, Hiral Patel #, Gregory K Potts, Shilpi Chaurasia, Lauren Gibilisco, Gyan P Srivastava, Janice Y Lee, Nathan J Brown, Patricia Amarante, Jon D Williams, Eric Karran, Matthew Townsend, Dori Woods, Brinda Ravikumar

Abstract

Aggregation of misfolded α-synuclein (α-syn) is a key characteristic feature of Parkinson's disease (PD) and related synucleinopathies. The nature of these aggregates and their contribution to cellular dysfunction is still not clearly elucidated. We employed mass spectrometry-based total and phospho-proteomics to characterize the underlying molecular and biological changes due to α-syn aggregation using the M83 mouse primary neuronal model of PD. We identified gross changes in the proteome that coincided with the formation of large Lewy body-like α-syn aggregates in these neurons. We used protein-protein interaction (PPI)-based network analysis to identify key protein clusters modulating specific biological pathways that may be dysregulated and identified several mechanisms that regulate protein homeostasis (proteostasis). The observed changes in the proteome may include both homeostatic compensation and dysregulation due to α-syn aggregation and a greater understanding of both processes and their role in α-syn-related proteostasis may lead to improved therapeutic options for patients with PD and related disorders.

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