4.7 Article

Paired Helical Filament-Forming Region of Tau (297-391) Influences Endogenous Tau Protein and Accumulates in Acidic Compartments in Human Neuronal Cells

期刊

JOURNAL OF MOLECULAR BIOLOGY
卷 432, 期 17, 页码 4891-4907

出版社

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jmb.2020.05.027

关键词

tau; Alzheimer's disease; propagation; aggregation

资金

  1. Sussex Neuroscience doctoral grant
  2. Medical Research Council [MR/K022105/1]
  3. Alzheimer's Research UK
  4. Alzheimer's Society and Biotechnology and Biological Sciences Research Council [BB/S003657/1]
  5. WisTa Laboratories Ltd. [PAR1596]

向作者/读者索取更多资源

Assembly of tau protein into paired helical filaments and straight filaments is a key feature of Alzheimer's disease. Aggregation of tau has been implicated in neurodegeneration, cellular toxicity and the propagation, which accompanies disease progression. We have reported previously that a region of tau (297-391), referred to as dGAE, assembles spontaneously in physiological conditions to form paired helical filament-like fibres in vitro in the absence of additives such as heparin. This provides a valuable tool with which to explore the effects of tau in cell culture. Here we have studied the cellular uptake of soluble oligomeric and fibrillar forms of dGAE and examined the downstream consequences of tau intemalisation into differentiated SHSY5Y neuroblastoma cells using fluorescence and electron microscopy alongside structural and biochemical analyses. The assembled dGAE shows more acute cytotoxicity than the soluble, non-aggregated form. Conversely, the soluble form is much more readily internalised and, once within the cell, is able to associate with endogenous tau resulting in increased phosphorylation and aggregation of endogenous tau, which accumulates in lysosomal/endosomal compartments. It appears that soluble oligomeric forms are able to propagate tau pathology without being acutely toxic. The model system we have developed now permits the molecular mechanisms of propagation of tau pathology to be studied in vitro in a more physiological manner with a view to development of novel therapeutic approaches. (C) 2020 The Authors. Published by Elsevier Ltd.

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