Epigenome Editing Durability Varies Widely Across Cardiovascular Disease Target Genes
Epigenome Editing Durability Varies Widely Across Cardiovascular Disease Target Genes
ABSTRACT BackgroundHepatic knockdown of the proprotein convertase subtilisin/kexin type 9 (PCSK9) gene or the angiopoietin-like 3 (ANGPTL3) gene has been demonstrated to reduce blood low-density lipoprotein cholesterol (LDL-C) levels, and hepatic knockdown of the angiotensinogen (AGT) gene has been demonstrated to reduce blood pressure. Genome editing can productively target each of these three genes in hepatocytes in the liver, offering the possibility of durable “one-and-done” therapies for hypercholesterolemia and hypertension. However, concerns around making permanent gene sequence changes via DNA strand breaks might hinder acceptance of these therapies. Epigenome editing offers an alternative approach to gene inactivation, via silencing of gene expression by methylation of the promoter region, but the long-term durability of epigenome editing remains to be established. MethodsWe assessed the ability of epigenome editing to durably reduce the expression of the human PCSK9, ANGPTL3, and AGT genes in HuH-7 hepatoma cells. Using the CRISPRoff epigenome editor, we identified guide RNAs that produced efficient gene knockdown immediately after transfection. We assessed the durability of gene expression and methylation changes through serial cell passages. ResultsCells treated with CRISPRoff and PCSK9 guide RNAs were maintained for up to 124 cell doublings and demonstrated durable knockdown of gene expression and increased CpG dinucleotide methylation in the promoter, exon 1, and intron 1 regions. In contrast, cells treated with CRISPRoff and ANGPTL3 guide RNAs experienced only transient knockdown of gene expression. Cells treated with CRISPRoff and AGT guide RNAs also experienced transient knockdown of gene expression; although initially there was increased CpG methylation throughout the early part of the gene, this methylation was geographically heterogeneous—transient in the promoter, and stable in intron 1. ConclusionsThis work demonstrates precise and durable gene regulation via methylation, supporting a new therapeutic approach for protection against cardiovascular disease via knockdown of genes such as PCSK9. However, the durability of knockdown with methylation changes is not generalizable across target genes, likely limiting the therapeutic potential of epigenome editing compared to other modalities.
Yang Yifan、Musunuru Kiran、Testa Lauren C.、Cortez-Alvarado Sa¨2l V.、Qu Ping、Wang Xiao、Quigley Aidan、Whittaker Madelynn N.、Jindal Ishaan、Alameh Mohamad-Gabriel
Cardiovascular Institute, Perelman School of Medicine at the University of PennsylvaniaCardiovascular Institute, Perelman School of Medicine at the University of Pennsylvania||Division of Cardiovascular Medicine, Department of Medicine, Perelman School of Medicine at the University of PennsylvaniaCardiovascular Institute, Perelman School of Medicine at the University of PennsylvaniaCardiovascular Institute, Perelman School of Medicine at the University of PennsylvaniaCardiovascular Institute, Perelman School of Medicine at the University of PennsylvaniaCardiovascular Institute, Perelman School of Medicine at the University of Pennsylvania||Division of Cardiovascular Medicine, Department of Medicine, Perelman School of Medicine at the University of PennsylvaniaCardiovascular Institute, Perelman School of Medicine at the University of PennsylvaniaCardiovascular Institute, Perelman School of Medicine at the University of Pennsylvania||Department of Bioengineering, University of PennsylvaniaCardiovascular Institute, Perelman School of Medicine at the University of PennsylvaniaDepartment of Bioengineering, George Mason University||Division of Infectious Diseases, Department of Medicine, Perelman School of Medicine at the University of Pennsylvania
基础医学生物科学研究方法、生物科学研究技术分子生物学
Yang Yifan,Musunuru Kiran,Testa Lauren C.,Cortez-Alvarado Sa¨2l V.,Qu Ping,Wang Xiao,Quigley Aidan,Whittaker Madelynn N.,Jindal Ishaan,Alameh Mohamad-Gabriel.Epigenome Editing Durability Varies Widely Across Cardiovascular Disease Target Genes[EB/OL].(2025-03-28)[2025-05-02].https://www.biorxiv.org/content/10.1101/2023.05.17.541156.点此复制
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