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  • Autophagy Activation by Transcription Factor EB (TFEB) in Striatum of HDQ175/Q7 Mice.

Autophagy Activation by Transcription Factor EB (TFEB) in Striatum of HDQ175/Q7 Mice.

Journal of Huntington's disease (2016-10-01)
Petr Vodicka, Kathryn Chase, Maria Iuliano, Adelaide Tousley, Dana T Valentine, Ellen Sapp, Kimberly B Kegel-Gleason, Miguel Sena-Esteves, Neil Aronin, Marian DiFiglia
摘要

Mutant huntingtin (mHTT) is encoded by the Huntington's disease (HD) gene and its accumulation in the brain contributes to HD pathogenesis. Reducing mHTT levels through activation of the autophagosome-lysosomal pathway may have therapeutic benefit. Transcription factor EB (TFEB) regulates lysosome biogenesis and autophagy. To examine if increasing TFEB protein levels in HD mouse striatum induces autophagy and influences mHTT levels. We introduced cDNA encoding TFEB with an HA tag (TFEB-HA) under the control of neuron specific synapsin 1 promoter into the striatum of 3 month old HDQ175/Q7 mice using adeno-associated virus AAV2/9. The levels of exogenous TFEB were analyzed using qPCR and Western blot. Proteins involved in autophagy, levels of huntingtin, and striatal-enriched proteins were examined using biochemical and/or immunohistochemical methods. In HD mice expressing TFEB-HA, HA immunoreactivity distributed throughout the striatum in neuronal cell bodies and processes and preferentially in neuronal nuclei and overlapped with a loss of DARPP32 immunoreactivity. TFEB-HA mRNA and protein were detected in striatal lysates. There were increased levels of proteins involved with autophagosome/lysosome activity including LAMP-2A, LC3II, and cathepsin D and reduced levels of mutant HTT and the striatal enriched proteins DARPP32 and PDE10A. Compared to WT mice, HDQ175/Q7 mice had elevated levels of the ER stress protein GRP78/BiP and with TFEB-HA expression, increased levels of the astrocyte marker GFAP and pro-caspase 3. These results suggest that TFEB expression in the striatum of HDQ175/Q7 mice stimulates autophagy and lysosome activity, and lowers mHTT, but may also increase a neuronal stress response.

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Sigma-Aldrich
Anti-GAPDH,克隆6C5, clone 6C5, Chemicon®, from mouse
Sigma-Aldrich
抗胶质纤维酸性蛋白(GFAP)抗体, serum, Chemicon®