Long non-coding RNA NEAT1_1 ameliorates TDP-43 toxicity in in vivo models of TDP-43 proteinopathy

K Matsukawa, MS Kukharsky, SK Park, S Park… - RNA biology, 2021 - Taylor & Francis
K Matsukawa, MS Kukharsky, SK Park, S Park, N Watanabe, T Iwatsubo, T Hashimoto
RNA biology, 2021Taylor & Francis
Pathological changes involving TDP-43 protein ('TDP-43 proteinopathy') are typical for
several neurodegenerative diseases, including frontotemporal lobar degeneration (FTLD).
FTLD-TDP cases are characterized by increased binding of TDP-43 to an abundant lncRNA,
NEAT1, in the cortex. However it is unclear whether enhanced TDP-43-NEAT1 interaction
represents a protective mechanism. We show that accumulation of human TDP-43 leads to
upregulation of the constitutive NEAT1 isoform, NEAT1_1, in cultured cells and in the brains …
Abstract
Pathological changes involving TDP-43 protein (‘TDP-43 proteinopathy’) are typical for several neurodegenerative diseases, including frontotemporal lobar degeneration (FTLD). FTLD-TDP cases are characterized by increased binding of TDP-43 to an abundant lncRNA, NEAT1, in the cortex. However it is unclear whether enhanced TDP-43-NEAT1 interaction represents a protective mechanism. We show that accumulation of human TDP-43 leads to upregulation of the constitutive NEAT1 isoform, NEAT1_1, in cultured cells and in the brains of transgenic mice. Further, we demonstrate that overexpression of NEAT1_1 ameliorates TDP-43 toxicity in Drosophila and yeast models of TDP-43 proteinopathy. Thus, NEAT1_1 upregulation may be protective in TDP-43 proteinopathies affecting the brain. Approaches to boost NEAT1_1 expression in the CNS may prove useful in the treatment of these conditions.
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