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Surya A. Reis, Morgan N. Thompson, Jong-Min Lee, Elisa Fossale, Hyung-Hwan Kim, James K. Liao, Michael A. Moskowitz, Stanley Y. Shaw, Linda Dong, Stephen J. Haggarty, Marcy E. MacDonald, Ihn Sik Seong, Striatal neurons expressing full-length mutant huntingtin exhibit decreased N-cadherin and altered neuritogenesis, Human Molecular Genetics, Volume 20, Issue 12, 15 June 2011, Pages 2344–2355, https://doi.org/10.1093/hmg/ddr127
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Abstract
The expanded CAG repeat that causes striatal cell vulnerability in Huntington's disease (HD) encodes a polyglutamine tract in full-length huntingtin that is correlated with cellular [ATP] and [ATP/ADP]. Since striatal neurons are vulnerable to energy deficit, we have investigated, in Hdh CAG knock-in mice and striatal cells, the hypothesis that decreased energetics may affect neuronal (N)-cadherin, a candidate energy-sensitive adhesion protein that may contribute to HD striatal cell sensitivity. In vivo , N-cadherin was sensitive to ischemia and to the effects of full-length mutant huntingtin, progressively decreasing in Hdh Q111 striatum with age. In cultured striatal cells, N-cadherin was decreased by ATP depletion and ST Hdh Q111 striatal cells exhibited dramatically decreased N-cadherin, due to decreased Cdh2 mRNA and enhanced N-cadherin turnover, which was partially normalized by adenine supplementation to increase [ATP] and [ATP/ADP]. Consistent with decreased N-cadherin function, ST Hdh Q111 striatal cells displayed profound deficits in calcium-dependent N-cadherin-mediated cell clustering and cell–substratum adhesion, and primary Hdh Q111 striatal neuronal cells exhibited decreased N-cadherin and an abundance of immature neurites, featuring diffuse, rather than clustered, staining for N-cadherin and synaptic vesicle markers, which was partially rescued by adenine treatment. Thus, mutant full-length huntingtin, via energetic deficit, contributes to decreased N-cadherin levels in striatal neurons, with detrimental effects on neurite maturation, strongly suggesting that N-cadherin-mediated signaling merits investigation early in the HD pathogenic disease process.