Comprehensive phenotypic characterization of an allelic series of zebrafish models of NEB-related nemaline myopathy

Author:

Fabian Lacramioara1ORCID,Karimi Esmat2,Farman Gerrie P2,Gohlke Jochen2,Ottenheijm Coen A C3,Granzier Hendrikus L2,Dowling James J145ORCID

Affiliation:

1. Genetics and Genome Biology Program, Hospital for Sick Children , 555 University Ave., Toronto, ON M5G 1X8 , Canada

2. Department of Cellular and Molecular Medicine, University of Arizona , 1007 E. Lowell Street, Tucson, AZ 85724 , United States

3. Department of Physiology, Amsterdam University Medical Center (location VUMC) , De Boelelaan 1108, Amsterdam 1081 HZ , The Netherlands

4. Division of Neurology, Hospital for Sick Children , 555 University Ave., Toronto, ON M5G 1X8 , Canada

5. Departments of Paediatrics and Molecular Genetics, University of Toronto , 1 King’s College Circle, Toronto, ON M5S 1A8 , Canada

Abstract

Abstract Nemaline myopathy (NM) is a rare congenital neuromuscular disorder characterized by muscle weakness and hypotonia, slow gross motor development, and decreased respiratory function. Mutations in at least twelve genes, all of each encode proteins that are either components of the muscle thin filament or regulate its length and stability, have been associated with NM. Mutations in Nebulin (NEB), a giant filamentous protein localized in the sarcomere, account for more than 50% of NM cases. At present, there remains a lack of understanding of whether NEB genotype influences nebulin function and NM-patient phenotypes. In addition, there is a lack of therapeutically tractable models that can enable drug discovery and address the current unmet treatment needs of patients. To begin to address these gaps, here we have characterized five new zebrafish models of NEB-related NM. These mutants recapitulate most aspects of NEB-based NM, showing drastically reduced survival, defective muscle structure, reduced contraction force, shorter thin filaments, presence of electron-dense structures in myofibers, and thickening of the Z-disks. This study represents the first extensive investigation of an allelic series of nebulin mutants, and thus provides an initial examination in pre-clinical models of potential genotype-phenotype correlations in human NEB patients. It also represents the first utilization of a set of comprehensive outcome measures in zebrafish, including correlation between molecular analyses, structural and biophysical investigations, and phenotypic outcomes. Therefore, it provides a rich source of data for future studies exploring the NM pathomechanisms, and an ideal springboard for therapy identification and development for NEB-related NM.

Funder

National Institute Of Arthritis And Musculoskeletal And Skin Diseases of the National Institutes of Health

National Institutes of Health

Publisher

Oxford University Press (OUP)

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