Amelioration of X-Linked Related Autophagy Failure in Danon Disease With DNA Methylation Inhibitor

Author:

Ng Kwong-Man1,Mok Pamela Y.1,Butler Amy W.1,Ho Jenny C.Y.1,Choi Shing-Wan1,Lee Yee-Ki1,Lai Wing-Hon1,Au Ka-Wing1,Lau Yee-Man1,Wong Lai-Yung1,Esteban Miguel A.1,Siu Chung-Wah1,Sham Pak C.1,Colman Alan1,Tse Hung-Fat1

Affiliation:

1. From Cardiology Division, Department of Medicine (K.-M.N., J.C.Y.H., Y.-K.L., W.-H.L., K.-W.A., Y.-M.L., L.-Y.W., C.-W.S., H.-F.T.) and Department of Psychiatry (A.W.B., S.-W.C., P.C.S., A.C.), Queen Mary Hospital, Research Center of Heart, Brain, Hormone and Healthy Aging, Li Ka Shing Faculty of Medicine (K.-M.N, C.W.-S., H.-F.T.), Hong Kong-Guangdong Joint Laboratory on Stem Cell and Regenerative Medicine (M.A.E., H.-F.T.), Centre for Genomic Sciences, Li Ka Shing Faculty of Medicine (P.C.S.),...

Abstract

Background: Danon disease is an X-linked disorder that leads to fatal cardiomyopathy caused by a deficiency in lysosome-associated membrane protein-2 (LAMP2). In female patients, a later onset and less severe clinical phenotype have been attributed to the random inactivation of the X chromosome carrying the mutant diseased allele. We generated a patient-specific induced pluripotent stem cell (iPSCs)–based model of Danon disease to evaluate the therapeutic potential of Xi-chromosome reactivation using a DNA methylation inhibitor. Methods: Using whole-exome sequencing, we identified a nonsense mutation (c.520C>T, exon 4) of the LAMP2 gene in a family with Danon disease. We generated iPSC lines from somatic cells derived from the affected mother and her 2 sons, and we then differentiated them into cardiomyocytes (iPSC-CMs) for modeling the histological and functional signatures, including autophagy failure of Danon disease. Results: Our iPSC-CM platform provides evidence that random inactivation of the wild-type and mutant LAMP2 alleles on the X chromosome is responsible for the unusual phenotype in female patients with Danon disease. In vitro, iPSC-CMs from these patients reproduced the histological features and autophagy failure of Danon disease. Administration of the DNA demethylating agent 5-aza-2’-deoxycytidine reactivated the silent LAMP2 allele in iPSCs and iPSC-CMs in female patients with Danon disease and ameliorated their autophagy failure, supporting the application of a patient-specific iPSC platform for disease modeling and drug screening. Conclusions: Our iPSC-CM platform provides novel mechanistic and therapeutic insights into the contribution of random X chromosome inactivation to disease phenotype in X-linked Danon disease.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine

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