4.8 Article

Heparan sulfate proteoglycans mediate internalization and propagation of specific proteopathic seeds

出版社

NATL ACAD SCIENCES
DOI: 10.1073/pnas.1301440110

关键词

neurodegeneration; Alzheimer's disease; prion-like mechanisms; macropinocytosis

资金

  1. Tau Consortium
  2. Muscular Dystrophy Association
  3. American Health Assistance Foundation
  4. Ruth K. Broad Foundation
  5. National Institutes of Health (NIH) [1R01NS071835, 1R01GM038093, K08NS074194, 1F31NS079039, P50 CA94056, P30 CA091842]
  6. Molecular Imaging Center at the Mallinckrodt Institute of Radiology
  7. Bridging Research with Imaging, Genomics, and High-Throughput Technologies Institute at Washington University School of Medicine
  8. Bakewell Family Foundation
  9. NIH Neuroscience Blueprint Interdisciplinary Center Core Grant [P30 NS057105]

向作者/读者索取更多资源

Recent experimental evidence suggests that transcellular propagation of fibrillar protein aggregates drives the progression of neurodegenerative diseases in a prion-like manner. This phenomenon is now well described in cell and animal models and involves the release of protein aggregates into the extracellular space. Free aggregates then enter neighboring cells to seed further fibrillization. The mechanism by which aggregated extracellular proteins such as tau and alpha-synuclein bind and enter cells to trigger intracellular fibril formation is unknown. Prior work indicates that prion protein aggregates bind heparan sulfate proteoglycans (HSPGs) on the cell surface to transmit pathologic processes. Here, we find that tau fibril uptake also occurs via HSPG binding. This is blocked in cultured cells and primary neurons by heparin, chlorate, heparinase, and genetic knockdown of a key HSPG synthetic enzyme, Ext1. Interference with tau binding to HSPGs prevents recombinant tau fibrils from inducing intracellular aggregation and blocks transcellular aggregate propagation. In vivo, a heparin mimetic, F6, blocks neuronal uptake of stereotactically injected tau fibrils. Finally, uptake and seeding by alpha-synuclein fibrils, but not huntingtin fibrils, occurs by the same mechanism as tau. This work suggests a unifying mechanism of cell uptake and propagation for tauopathy and synucleinopathy.

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