A Simple Model to Study Tau Pathology
Author(s) -
Alexander L. Houck,
Félix Hernández,
Jesús Ávila
Publication year - 2016
Publication title -
journal of experimental neuroscience
Language(s) - English
Resource type - Journals
ISSN - 1179-0695
DOI - 10.4137/jen.s25100
Subject(s) - phosphorylation , intracellular , embryonic stem cell , microbiology and biotechnology , tau pathology , tau protein , microtubule , kinase , hek 293 cells , biology , neuroscience , chemistry , cell culture , pathology , medicine , biochemistry , genetics , alzheimer's disease , disease , gene
Tau proteins play a role in the stabilization of microtubules, but in pathological conditions, tauopathies, tau is modified by phosphorylation and can aggregate into aberrant aggregates. These aggregates could be toxic to cells, and different cell models have been used to test for compounds that might prevent these tau modifications. Here, we have used a cell model involving the overexpression of human tau in human embryonic kidney 293 cells. In human embryonic kidney 293 cells expressing tau in a stable manner, we have been able to replicate the phosphorylation of intracellular tau. This intracellular tau increases its own level of phosphorylation and aggregates, likely due to the regulatory effect of some growth factors on specific tau kinases such as GSK3. In these conditions, a change in secreted tau was observed. Reversal of phosphorylation and aggregation of tau was found by the use of lithium, a GSK3 inhibitor. Thus, we propose this as a simple cell model to study tau pathology in nonneuronal cells due to their viability and ease to work with.
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