Resumen
BACKGROUND: – Hypertrophic cardiomyopathy is often linked to likely pathogenic and pathogenic variants in genes encoding myofilament proteins. The exact molecular mechanisms by which these lead to cardiac dysfunction and metabolic remodeling remain incompletely understood. Hence, here, we sought to determine whether likely pathogenic and pathogenic variants in thick (MYL2) and thin (TNNI3 or TNNT2) filament genes modulate the myosin super-relaxed state, a critical molecular regulator of heart energetics. METHODS: – We isolated cardiac strips from the septum of 13 patients with hypertrophic cardiomyopathy with MYL2, TNNI3, or TNNT2 gene variants and 10 nonfailing donors. We performed 2′-(or-3′)-O-(N-methylanthraniloyl) ATP chase experiments and x-ray diffraction as well as all-atomistic molecular dynamics simulations. RESULTS: – We observed that, despite preserved myofilament lattice, likely pathogenic and pathogenic variants in thick and thin filament proteins have opposite effects on cardiac myosin autoinhibition and the subsequent proportion of myosin molecules in the ATP-preserving super-relaxed state. As expected, MYL2-associated thick filament variants depressed myosin super-relaxation. However, with TNNI3- or TNNT2-related thin filament variants, myosin heads adopt an energy-saving biochemical hibernating state. Ultimately, these thin filament defects blunted the in vitro response to the hypertrophic cardiomyopathy–targeted inhibitor, mavacamten. CONCLUSIONS: – Our findings indicate that, in hypertrophic cardiomyopathy, cardiac myosin super-relaxed state, associated ATP consumption, and in vitro mavacamten responsiveness depend on the type of myofilament variants. Our data warrant careful analyses of variant-specific responses to myosin inhibitors in the clinic.
| Idioma original | English |
|---|---|
| Páginas (desde-hasta) | e012614 |
| Publicación | Circulation: Heart Failure |
| Volumen | 18 |
| N.º | 9 |
| DOI | |
| Estado | Published - sept 2025 |
Nota bibliográfica
Publisher Copyright:© 2025
Financiación
This work was generously funded by a Novo Nordisk Foundation project grant (NNF23-OC0085045) to Dr Ochala; the Danish Diabetes and Endocrine Academy (NNF-22SA0079901) to Dr Nollet; the NWO-ZonMW VICI (91818602) and Dutch Cardiovascular Alliance/Netherlands Heart Foundation Double Dose grants to Dr van der Velden; National Institutes of Health (NIH) grant HL148785 to Dr Campbell; HL160966 to Dr Pinto; National Natural Science Foundation of China grants (32000882 and 12374220) to Dr Wang. Donor heart tissue procurement was supported by NIH grants HL149891 and HL105993 to Dr Margulies. The numerical calculations have been done on the supercomputing system in the Supercomputing Center of the University of Science and Technology of China. The X-ray experiments were run at SPring8 (BL45XU beamline, 2023A1088) and the National Synchrotron Light Source II (LiX beamline). The LiX beamline is part of the Center for BioMolecular Structure (CBMS), which is primarily supported by the National Institutes of Health, National Institute of General Medical Sciences (NIGMS) through a P30 Grant (P30GM133893), and by the DOE Office of Biological and Environmental Research (KP1605010). LiX also received additional support from National Institutes of Health Grant S10 OD012331. As part of NSLS-II, a national user facility at Brookhaven National Laboratory, work performed at the CBMS is supported in part by the US Department of Energy, Office of Science, Office of Basic Energy Sciences Program under contract number DE-SC0012704. Drs Ochala, Wang, Hessel, Kuster, and van der Velden conceived the study; Drs Ochala, Wang, Nollet, and van der Velden acquired funding and supervised the work; Dr Ochala managed the project; Dr Michels, K.C. Bedi, Dr Margulies, and Dr Campbell acquired human samples. Dr Ochala, M. Feng, Dr Wang, Dr Nollet, Dr Lewis, Dr Hessel, and Dr Pinto performed experiments; Dr Ochala, M. Feng, Dr Wang, Dr Nollet, Dr Lewis, Dr Hessel, Dr Michels, K.C. Bedi, Dr Margulies, Dr Pinto, Dr Campbell, Dr Kuster, and Dr van der Velden analyzed data and interpreted the results. All authors approved the manuscript.
| Financiadores | Número del financiador |
|---|---|
| Dutch Cardiovascular Alliance | |
| U.S. Department of Energy | |
| Netherlands Heart Foundation | |
| Office of Science Programs | |
| NWO-ZonMW VICI | 91818602 |
| National Institutes of Health (NIH) | HL148785, HL160966 |
| Biological and Environmental Research | S10 OD012331, KP1605010 |
| National Natural Science Foundation of China (NSFC) | 32000882, 12374220, HL105993, HL149891 |
| Novo Nordisk Fonden (Novo Nordisk Foundation) | NNF23-OC0085045 |
| National Institute of General Medical Sciences DP2GM119177 Sophie Dumont National Institute of General Medical Sciences | P30GM133893 |
| DOE Basic Energy Sciences | DE-SC0012704 |
| Danish Diabetes and Endocrine Academy | NNF-22SA0079901 |
ASJC Scopus subject areas
- Cardiology and Cardiovascular Medicine
Huella
Profundice en los temas de investigación de 'Heterogeneous Dysregulation of Myosin Super-Relaxation and Energetics in Hypertrophic Cardiomyopathy'. En conjunto forman una huella única.Citar esto
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