Drug screen in iPSC-Neurons identifies nucleoside analogs as inhibitors of (G4C2)n expression in C9orf72 ALS/FTD

iPSC-Neurons 中的药物筛选鉴定出核苷类似物是 C9orf72 ALS/FTD 中 (G4C2)n 表达的抑制剂

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作者:Mareike Czuppa, Ashutosh Dhingra, Qihui Zhou, Carina Schludi, Laura König, Elisabeth Scharf, Daniel Farny, Anupriya Dalmia, Joachim Täger, Melissa Castillo-Lizardo, Eszter Katona, Kohji Mori, Tina Aumer, Florian Schelter, Markus Müller, Thomas Carell, Tuomo Kalliokoski, Josef Messinger, Patrizia Riz

Abstract

An intronic (G4C2)n expansion in C9orf72 causes amyotrophic lateral sclerosis and frontotemporal dementia primarily through gain-of-function mechanisms: the accumulation of sense and antisense repeat RNA foci and dipeptide repeat (DPR) proteins (poly-GA/GP/GR/PA/PR) translated from repeat RNA. To therapeutically block this pathway, we screen a library of 1,430 approved drugs and known bioactive compounds in patient-derived induced pluripotent stem cell-derived neurons (iPSC-Neurons) for inhibitors of DPR expression. The clinically used guanosine/cytidine analogs decitabine, entecavir, and nelarabine reduce poly-GA/GP expression, with decitabine being the most potent. Hit compounds nearly abolish sense and antisense RNA foci and reduce expression of the repeat-containing nascent C9orf72 RNA transcript and its mature mRNA with minimal effects on global gene expression, suggesting that they specifically act on repeat transcription. Importantly, decitabine treatment reduces (G4C2)n foci and DPRs in C9orf72 BAC transgenic mice. Our findings suggest that nucleoside analogs are a promising compound class for therapeutic development in C9orf72 repeat-expansion-associated disorders.

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