Back to Search Start Over

A form of muscular dystrophy associated with pathogenic variants in JAG2

Authors :
Marie Rivera-Zengotita
Alison M. Barnard
Sanna Puusepp
Anna Łusakowska
Ros Quinlivan
Margherita Milone
Isabelle Draper
Katherine R. Chao
Erica L. Macke
Mait Nigul
Teepu Siddique
Vijay S. Ganesh
Sander Pajusalu
Nicolas Deconinck
Sanna Gudmundsson
Masashi Ogasawara
Sandra Donkervoort
Christine C. Bruels
Glenn A. Walter
Ehsan Ghayoor Karimiani
Christina A. Pacak
Reza Maroofian
Sabine Costagliola
Julia K. Goodrich
Anne H. O’Donnell-Luria
Mehran Beiraghi Toosi
Sandra Coppens
Yao Meng
Lynn Pais
Henry Houlden
Eleina M. England
Rasha El Sherif
Anne Boland-Auge
Bertold Schrank
Volker Straub
Gisèle Bonne
Catheline Vilain
Payam Mohassel
Tanya Stojkovic
Isabelle Nelson
Ichizo Nishino
Stefan Nicolau
Anna Kostera-Pruszczyk
Ben Weisburd
Jean-François Deleuze
Enzo Cohen
Michael G. Hanna
Hazim Kadhim
Peter B. Kang
Dorianmarie Vargas-Franco
Penny A. Handford
Katrin Õunap
Pilvi Ilves
Ana Töpf
Carsten G. Bönnemann
Brendan C. Lanpher
Eric W. Klee
Andreas Hahn
Source :
The American Journal of Human Genetics, Am J Hum Genet
Publication Year :
2021
Publisher :
Elsevier BV, 2021.

Abstract

JAG2 encodes the Notch ligand Jagged2. The conserved Notch signaling pathway contributes to the development and homeostasis of multiple tissues, including skeletal muscle. We studied an international cohort of 23 individuals with genetically unsolved muscular dystrophy from 13 unrelated families. Whole-exome sequencing identified rare homozygous or compound heterozygous JAG2 variants in all 13 families. The identified bi-allelic variants include 10 missense variants that disrupt highly conserved amino acids, a nonsense variant, two frameshift variants, an in-frame deletion, and a microdeletion encompassing JAG2. Onset of muscle weakness occurred from infancy to young adulthood. Serum creatine kinase (CK) levels were normal or mildly elevated. Muscle histology was primarily dystrophic. MRI of the lower extremities revealed a distinct, slightly asymmetric pattern of muscle involvement with cores of preserved and affected muscles in quadriceps and tibialis anterior, in some cases resembling patterns seen in POGLUT1-associated muscular dystrophy. Transcriptome analysis of muscle tissue from two participants suggested misregulation of genes involved in myogenesis, including PAX7. In complementary studies, Jag2 downregulation in murine myoblasts led to downregulation of multiple components of the Notch pathway, including Megf10. Investigations in Drosophila suggested an interaction between Serrate and Drpr, the fly orthologs of JAG1/JAG2 and MEGF10, respectively. In silico analysis predicted that many Jagged2 missense variants are associated with structural changes and protein misfolding. In summary, we describe a muscular dystrophy associated with pathogenic variants in JAG2 and evidence suggests a disease mechanism related to Notch pathway dysfunction.

Details

ISSN :
00029297
Volume :
108
Database :
OpenAIRE
Journal :
The American Journal of Human Genetics
Accession number :
edsair.doi.dedup.....de5cf77949f159f13e3db961570ab30b
Full Text :
https://doi.org/10.1016/j.ajhg.2021.03.020