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In Vivo Target Gene Activation via CRISPR/Cas9-Mediated Trans-epigenetic Modulation.
Cell. 2017 Dec 14;171(7):1495-1507.e15. doi: 10.1016/j.cell.2017.10.025
Liao HK, Hatanaka F, Araoka T, Reddy P, Wu MZ, Sui Y, Yamauchi T, Sakurai M, O’Keefe DD, Núñez-Delicado E, Guillen P, Campistol JM, Wu CJ, Lu LF, Esteban CR, Izpisua Belmonte JC
Abstract:
Current genome-editing systems generally rely on inducing DNA double-strand breaks (DSBs). This may limit their utility in clinical therapies, as unwanted mutations caused by DSBs can have deleterious effects. CRISPR/Cas9 system has recently been repurposed to enable target gene activation, allowing regulation of endogenous gene expression without creating DSBs. However, in vivo implementation of this gain-of-function system has proven difficult. Here, we report a robust system for in vivo activation of endogenous target genes through trans-epigenetic remodeling. The system relies on recruitment of Cas9 and transcriptional activation complexes to target loci by modified single guide RNAs. As proof-of-concept, we used this technology to treat mouse models of diabetes, muscular dystrophy, and acute kidney disease. Results demonstrate that CRISPR/Cas9-mediated target gene activation can be achieved in vivo, leading to measurable phenotypes and amelioration of disease symptoms. This establishes new avenues for developing targeted epigenetic therapies against human diseases. VIDEO ABSTRACT.
Comment in:
* Turning up the Heat with Therapeutic Epigenome Editing. [Cell Stem Cell. 2018]
* Boosting, Not Breaking: CRISPR Activators Treat Disease Models. [Mol Ther. 2018]
* Use of the CRISPR/Cas9-based epigenetic gene activation system In Vivo: A new potential therapeutic modality. [Hepatology. 2018]
Comment in:
* Turning up the Heat with Therapeutic Epigenome Editing. [Cell Stem Cell. 2018]
* Boosting, Not Breaking: CRISPR Activators Treat Disease Models. [Mol Ther. 2018]
* Use of the CRISPR/Cas9-based epigenetic gene activation system In Vivo: A new potential therapeutic modality. [Hepatology. 2018]
PMID: 29224783
Free Full-Text: https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5732045/
Tags: CRISPR-Cas9, epigenetics, gene activation, methods