Overexpression of hepatocyte growth factor in SBMA model mice has an additive effect on combination therapy with castration

Spinal and bulbar muscular atrophy (SBMA) is an inherited motor neuron disease caused by the expansion of a polyglutamine (polyQ)-encoding tract within the androgen receptor (AR) gene. The pathologic features of SBMA are motor neuron loss in the spinal cord and brainstem and diffuse nuclear accumula...

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Veröffentlicht in:Biochemical and biophysical research communications 2015-12, Vol.468 (4), p.677-683
Hauptverfasser: Ding, Ying, Adachi, Hiroaki, Katsuno, Masahisa, Huang, Zhe, Jiang, Yue-Mei, Kondo, Naohide, Iida, Madoka, Tohnai, Genki, Nakatsuji, Hideaki, Funakoshi, Hiroshi, Nakamura, Toshikazu, Sobue, Gen
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Sprache:eng
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Zusammenfassung:Spinal and bulbar muscular atrophy (SBMA) is an inherited motor neuron disease caused by the expansion of a polyglutamine (polyQ)-encoding tract within the androgen receptor (AR) gene. The pathologic features of SBMA are motor neuron loss in the spinal cord and brainstem and diffuse nuclear accumulation and nuclear inclusions of mutant AR in residual motor neurons and certain visceral organs. Hepatocyte growth factor (HGF) is a polypeptide growth factor which has neuroprotective properties. To investigate whether HGF overexpression can affect disease progression in a mouse model of SBMA, we crossed SBMA transgenic model mice expressing an AR gene with an expanded CAG repeat with mice overexpressing HGF. Here, we report that high expression of HGF induces Akt phosphorylation and modestly ameliorated motor symptoms in an SBMA transgenic mouse model treated with or without castration. These findings suggest that HGF overexpression can provide a potential therapeutic avenue as a combination therapy with disease-modifying therapies in SBMA. •HGF overexpression ameliorates the motor phenotypes of the SBMA mouse model.•HGF overexpression induces Akt phosphorylation in the SBMA mouse model.•This is the first report of combination therapy in a mouse model of polyQ diseases.
ISSN:0006-291X
1090-2104
DOI:10.1016/j.bbrc.2015.11.015