AUTHOR=Feliciano Carissa M. , Wu Kenneth , Watry Hannah L. , Marley Chiara B. E. , Ramadoss Gokul N. , Ghanim Hana Y. , Liu Angela Z. , Zholudeva Lyandysha V. , McDevitt Todd C. , Saporta Mario A. , Conklin Bruce R. , Judge Luke M. TITLE=Allele-Specific Gene Editing Rescues Pathology in a Human Model of Charcot-Marie-Tooth Disease Type 2E JOURNAL=Frontiers in Cell and Developmental Biology VOLUME=9 YEAR=2021 URL=https://www.frontiersin.org/journals/cell-and-developmental-biology/articles/10.3389/fcell.2021.723023 DOI=10.3389/fcell.2021.723023 ISSN=2296-634X ABSTRACT=
Many neuromuscular disorders are caused by dominant missense mutations that lead to dominant-negative or gain-of-function pathology. This category of disease is challenging to address via drug treatment or gene augmentation therapy because these strategies may not eliminate the effects of the mutant protein or RNA. Thus, effective treatments are severely lacking for these dominant diseases, which often cause severe disability or death. The targeted inactivation of dominant disease alleles by gene editing is a promising approach with the potential to completely remove the cause of pathology with a single treatment. Here, we demonstrate that allele-specific CRISPR gene editing in a human model of axonal Charcot-Marie-Tooth (CMT) disease rescues pathology caused by a dominant missense mutation in the neurofilament light chain gene (