From bedside to bench: A multimodal approach uncovering the molecular basis of the <i>MYBPC1</i> -linked Myotrem myopathy
Abstract
Myotrem is an untreatable, early-onset, congenital myopathy characterized by hypotonia, muscle weakness, skeletal deformities, dysmorphia, respiratory insufficiency, and myogenic tremor (V. Shashi et al., Hum Mutat , 2019 and J. Stavusis et al., Ann. Neurol. , 2019). It is associated with dominant variants in the pivotal M-domain of slow-skeletal Myosin Binding Protein-C (sMyBP-C) that modulates the dynamic binding to myosin and actin filaments and thereby crossbridge formation and kinetics. Herein, we report a nonmissense Myotrem variant, c.795_803dup p.(Leu266_Arg268dup), referred to as LKR-duplication. Our comprehensive studies, integrating clinical findings with biophysical, structural, and computational approaches, uncover the previously unreported structure and properties of the slow-skeletal M-domain, while elucidating the impact of the LKR-duplication. We show that the LKR-duplication stabilizes local helicity but alters global domain dynamics, leading to increased myosin binding, while impairing myosin-ATPase activity and crossbridge cycling. Critically, we pinpoint the specific amino acid residues facilitating the M-domain/myosin interaction and demonstrate that the LKR-duplicated residues not only directly contribute to myosin binding but also enhance the myosin interacting capability of neighboring and distant residues. Our multimodal approach sheds light on aspects of the pathobiology of the slow-skeletal M-domain—the Myotrem hotspot—by unveiling underlying pathogenic etiologies thereby paving the way for the development of targeted treatments.
Article Details
Journal Info
Proceedings of the National Academy of Sciences
National Academy of Sciences
Authors (17)
Aishwarya S. Iyer
Department of Biochemistry and Molecular Biology, University of Maryland School of Medicine
Nathan T. Wright
Mary E. Cook
Yasuharu Takagi
Bruce A. Johnson
Structural Biology Initiative, The City University of New York Advanced Science Research Center
Valérie Biancalana
Laboratory of Genetic Diagnosis, Faculty of Medicine, Centre Hospitalier Régional Universitaire
Marie Massier
Department of Genetics, Reims University Hospital
Marta Spodenkiewicz
Department of Genetics, Reims University Hospital
Céline Poirsier
Department of Genetics, Reims University Hospital
Brice Vallecillo
Neuromuscular diseases Reference Center, Department of Physical and Rehabilitation Medicine, Reims University Hospital, Sebastopol Hospital, Centre Hospitalier Universitaire de Reims, UR3797, VieFra, Reims Champagne-Ardenne University
François Constant Boyer
Neuromuscular diseases Reference Center, Department of Physical and Rehabilitation Medicine, Reims University Hospital, Sebastopol Hospital, Centre Hospitalier Universitaire de Reims, UR3797, VieFra, Reims Champagne-Ardenne University
Charlotte Pineau
Pediatric Electrophysiology Department, Reims University Hospital
Lindsey Hensley
Department of Chemistry and Biochemistry, James Madison University
James R. Sellers
Kristen M. Varney
Department of Biochemistry and Molecular Biology, University of Maryland School of Medicine
David J. Weber
Department of Biochemistry and Molecular Biology, University of Maryland School of Medicine
Aikaterini Kontrogianni-Konstantopoulos
Department of Biochemistry and Molecular Biology, University of Maryland School of Medicine