Spinal muscular atrophy phenotype is ameliorated in human motor neurons by SMN increase via different novel RNA therapeutic approaches

被引:37
作者
Nizzardo, Monica [1 ]
Simone, Chiara [1 ]
Dametti, Sara [1 ]
Salani, Sabrina [1 ]
Ulzi, Gianna [1 ]
Pagliarani, Serena [1 ]
Rizzo, Federica [1 ]
Frattini, Emanuele [1 ]
Pagani, Franco [2 ]
Bresolin, Nereo [1 ]
Comi, Giacomo [1 ]
Corti, Stefania [1 ]
机构
[1] Univ Milan, Dept Pathophysiol & Transplantat DEPT, IRCCS Fdn Ca Granda Osped Maggiore Policlin, Dino Ferrari Ctr,Neurosci Sect,Neurol Unit, Milan, Italy
[2] Int Ctr Genet Engn & Biotechnol, Human Mol Genet, I-34012 Trieste, Italy
关键词
PLURIPOTENT STEM-CELLS; MESSENGER-RNA; PROTEIN; GENE; STRATEGIES; SURVIVAL;
D O I
10.1038/srep11746
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Spinal muscular atrophy (SMA) is a primary genetic cause of infant mortality due to mutations in the Survival Motor Neuron (SMN) 1 gene. No cure is available. Antisense oligonucleotides (ASOs) aimed at increasing SMN levels from the paralogous SMN2 gene represent a possible therapeutic strategy. Here, we tested in SMA human induced pluripotent stem cells (iPSCs) and iPSC-differentiated motor neurons, three different RNA approaches based on morpholino antisense targeting of the ISSN-1, exon-specific U1 small nuclear RNA (ExSpeU1), and Transcription Activator-Like Effector-Transcription Factor (TALE-TF). All strategies act modulating SMN2 RNA: ASO affects exon 7 splicing, TALE-TF increase SMN2 RNA acting on the promoter, while ExSpeU1 improves pre-mRNA processing. These approaches induced up-regulation of full-length SMN mRNA and differentially affected the Delta-7 isoform: ASO reduced this isoform, while ExSpeU1 and TALE-TF increased it. All approaches upregulate the SMN protein and significantly improve the in vitro SMA motor neurons survival. Thus, these findings demonstrate that therapeutic tools that act on SMN2 RNA are able to rescue the SMA disease phenotype. Our data confirm the feasibility of SMA iPSCs as in vitro disease models and we propose novel RNA approaches as potential therapeutic strategies for treating SMA and other genetic neurological disorders.
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页数:13
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