Muscle-specific increased expression of <i>JAG1</i> improves the skeletal muscle phenotype in dystrophin-deficient mice

F Felipe de Souza Leite (Division of Genetics and Genomics, Boston Children’s Hospital) M Matthias R. Lambert (Division of Genetics and Genomics, Boston Children’s Hospital) T Tracy Yuanfan Zhang (Division of Genetics and Genomics, Boston Children’s Hospital) J James R. Conner (Division of Genetics and Genomics, Boston Children’s Hospital) J Joao A. Paulo S Sheldon Furtado Oliveira (Division of Genetics and Genomics, Boston Children’s Hospital) S Sanjukta Guha Thakurta (Department of Cell Biology, Harvard Medical School) J Jennifer Bowles (Division of Genetics and Genomics, Boston Children’s Hospital) E Emanuela Gussoni (Division of Genetics and Genomics, Boston Children’s Hospital) S Steven P. Gygi J Jeffrey J. Widrick (Division of Genetics and Genomics, Boston Children’s Hospital) L Louis M. Kunkel (Division of Genetics and Genomics, Boston Children’s Hospital)

Abstract

Therapeutic strategies for Duchenne muscular dystrophy (DMD) will likely require complementary approaches. One possibility is to explore genetic modifiers that improve muscle regeneration and function. The beneficial effects of the overexpression of Jagged-1 were described in escaper golden retriever muscular dystrophy (GRMD) dogs that had a near-normal life and validated in dystrophin-deficient zebrafish. To clarify the underlying biology of JAG1 overexpression in dystrophic muscles, we generated a transgenic mouse (mdx 5cv - JAG1 ) model that lacks dystrophin and overexpresses human JAG1 in striated muscles. Skeletal muscles from mdx 5cv - JAG1 and mdx 5cv mice were studied at 1-, 4-, and 12-mo time points. JAG1 expression in mdx 5cv - JAG1 increased by 3 to 5 times compared to mdx 5cv . Consequently, mdx 5cv - JAG1 muscles were significantly bigger and stronger than dystrophic controls, along with an increased number of myofibers. Proteomics data show increased dysferlin in mdx 5cv - JAG1 muscles and an association of the histone methyltransferase Nsd1 with the phenotype. Our data support the positive effect of JAG1 overexpression in dystrophic muscles.

Article Details

Volume / Issue Vol. 122, Issue 39
Published September 30, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (12)

F

Felipe de Souza Leite

Division of Genetics and Genomics, Boston Children’s Hospital

M

Matthias R. Lambert

Division of Genetics and Genomics, Boston Children’s Hospital

T

Tracy Yuanfan Zhang

Division of Genetics and Genomics, Boston Children’s Hospital

J

James R. Conner

Division of Genetics and Genomics, Boston Children’s Hospital

J

Joao A. Paulo

S

Sheldon Furtado Oliveira

Division of Genetics and Genomics, Boston Children’s Hospital

S

Sanjukta Guha Thakurta

Department of Cell Biology, Harvard Medical School

J

Jennifer Bowles

Division of Genetics and Genomics, Boston Children’s Hospital

E

Emanuela Gussoni

Division of Genetics and Genomics, Boston Children’s Hospital

S

Steven P. Gygi

J

Jeffrey J. Widrick

Division of Genetics and Genomics, Boston Children’s Hospital

L

Louis M. Kunkel

Division of Genetics and Genomics, Boston Children’s Hospital