A potent and selective Sirtuin 1 inhibitor alleviates pathology in multiple animal and cell models of Huntington's disease

生物 黑腹果蝇 锡尔图因 SIRT2 乙酰化 亨廷顿蛋白 细胞生物学 组蛋白 亨廷顿病 白藜芦醇 西妥因1 遗传学 突变体 生物化学 疾病 基因 病理 下调和上调 医学
作者
M.R. Smith,Adeela Syed,Tamás Lukácsovich,Judy Purcell,Brett A. Barbaro,Shane A. Worthge,Stephen R. Wei,Giuseppe Pollio,Letizia Magnoni,Carla Scali,Luisa Massai,Davide Franceschini,Michela Camarri,Marco Gianfriddo,Enrica Diodato,Russell J. Thomas,Özgün Gökçe,Sarah J. Tabrizi,Andrea Caricasole,G. Bernhard Landwehrmeyer,Liliana Menalled,Carol A. Murphy,Sylvie Ramboz,Ruth Luthi‐Carter,Göran Westerberg,J. Lawrence Marsh
出处
期刊:Human Molecular Genetics [Oxford University Press]
卷期号:23 (11): 2995-3007 被引量:126
标识
DOI:10.1093/hmg/ddu010
摘要

Protein acetylation, which is central to transcriptional control as well as other cellular processes, is disrupted in Huntington's disease (HD). Treatments that restore global acetylation levels, such as inhibiting histone deacetylases (HDACs), are effective in suppressing HD pathology in model organisms. However, agents that selectively target the disease-relevant HDACs have not been available. SirT1 (Sir2 in Drosophila melanogaster) deacetylates histones and other proteins including transcription factors. Genetically reducing, but not eliminating, Sir2 has been shown to suppress HD pathology in model organisms. To date, small molecule inhibitors of sirtuins have exhibited low potency and unattractive pharmacological and biopharmaceutical properties. Here, we show that highly selective pharmacological inhibition of Drosophila Sir2 and mammalian SirT1 using the novel inhibitor selisistat (selisistat; 6-chloro-2,3,4,9-tetrahydro-1H-carbazole-1-carboxamide) can suppress HD pathology caused by mutant huntingtin exon 1 fragments in Drosophila, mammalian cells and mice. We have validated Sir2 as the in vivo target of selisistat by showing that genetic elimination of Sir2 eradicates the effect of this inhibitor in Drosophila. The specificity of selisistat is shown by its effect on recombinant sirtuins in mammalian cells. Reduction of HD pathology by selisistat in Drosophila, mammalian cells and mouse models of HD suggests that this inhibitor has potential as an effective therapeutic treatment for human disease and may also serve as a tool to better understand the downstream pathways of SirT1/Sir2 that may be critical for HD.

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