X-linked spinal and bulbar muscular atrophy (SBMA), a form of motor neuron disease, is one of a growing list of disorders caused by expanded trinucleotide repeats. The mutation in SBMA is enlargement of a CAG repeat in the first exon of the androgen receptor gene. This CAG repeat encodes a polyglutamine tract near the amino end of the receptor protein, which is similar to repeats found in other proteins involved in control of transcription and development. A very similar repeat alteration has recently been found in Huntington's disease. Enlargement of CAG/polyglutamine tracts may thus be an important cause of neurodegenerative disease. We plan to characterize the causal connection between the androgen receptor mutations and the motor neuron degeneration of SBMA by studying the effects of the mutant androgen receptor in cultured neurons and transgenic mice. Constructs with normal and expanded versions of the androgen receptor will be assayed for neurotoxicity in vitro and in vivo. Since the normal function of the androgen receptor protein is as a transcription factor, and the disease is likely caused by a toxic gain of function of the receptor protein, the probable mechanism of neurotoxicity is through altered transcriptional regulation of one or more target genes. We plan to identify target genes that are aberrantly regulated by the expanded androgen receptor of SBMA and to look for specific effects of the altered receptor on genes known to play a role in motor neuron survival. We expect that our results will increase understanding of the cell biology of motor neurons and steroid hormone receptors. This project should also elucidate the pathogenesis of SBMA and may lead to effective treatment for this and other hereditary degenerative neurological disorders.

Agency
National Institute of Health (NIH)
Institute
National Institute of Neurological Disorders and Stroke (NINDS)
Type
Research Project (R01)
Project #
1R01NS032214-01A1
Application #
2270236
Study Section
Mammalian Genetics Study Section (MGN)
Project Start
1994-08-01
Project End
1998-07-31
Budget Start
1994-08-01
Budget End
1995-07-31
Support Year
1
Fiscal Year
1994
Total Cost
Indirect Cost
Name
University of Pennsylvania
Department
Neurology
Type
Schools of Medicine
DUNS #
042250712
City
Philadelphia
State
PA
Country
United States
Zip Code
19104
Yersak, Jill M; Montie, Heather L; Chevalier-Larsen, Erica S et al. (2017) The 11S Proteasomal Activator REG? Impacts Polyglutamine-Expanded Androgen Receptor Aggregation and Motor Neuron Viability through Distinct Mechanisms. Front Mol Neurosci 10:159
Berger, Tamar R; Montie, Heather L; Jain, Pranav et al. (2015) Identification of novel polyglutamine-expanded aggregation species in spinal and bulbar muscular atrophy. Brain Res 1628:254-264
Pratt, William B; Gestwicki, Jason E; Osawa, Yoichi et al. (2015) Targeting Hsp90/Hsp70-based protein quality control for treatment of adult onset neurodegenerative diseases. Annu Rev Pharmacol Toxicol 55:353-71
Chua, Jason P; Reddy, Satya L; Yu, Zhigang et al. (2015) Disrupting SUMOylation enhances transcriptional function and ameliorates polyglutamine androgen receptor-mediated disease. J Clin Invest 125:831-45
Heine, Erin M; Berger, Tamar R; Pluciennik, Anna et al. (2015) Proteasome-mediated proteolysis of the polyglutamine-expanded androgen receptor is a late event in spinal and bulbar muscular atrophy (SBMA) pathogenesis. J Biol Chem 290:12572-84
Pratt, William B; Morishima, Yoshihiro; Gestwicki, Jason E et al. (2014) A model in which heat shock protein 90 targets protein-folding clefts: rationale for a new approach to neuroprotective treatment of protein folding diseases. Exp Biol Med (Maywood) 239:1405-13
Chua, Jason P; Reddy, Satya L; Merry, Diane E et al. (2014) Transcriptional activation of TFEB/ZKSCAN3 target genes underlies enhanced autophagy in spinobulbar muscular atrophy. Hum Mol Genet 23:1376-86
Wang, Adrienne M; Miyata, Yoshinari; Klinedinst, Susan et al. (2013) Activation of Hsp70 reduces neurotoxicity by promoting polyglutamine protein degradation. Nat Chem Biol 9:112-8
Cooper, Lori J; Merry, Diane E (2013) Cell biological approaches to investigate polyglutamine-expanded AR metabolism. Methods Mol Biol 1017:241-53
Chevalier-Larsen, Erica S; Merry, Diane E (2012) Testosterone treatment fails to accelerate disease in a transgenic mouse model of spinal and bulbar muscular atrophy. Dis Model Mech 5:141-5

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