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Updated: May 26, 2026

Investigating the Pathogenesis of MYH7 Mutation Gly823Glu in Familial Hypertrophic Cardiomyopathy using a Mouse Model
Published on: August 8, 2022
Contractile dysfunction irrespective of the mutant protein in human hypertrophic cardiomyopathy with normal systolic
Sabine J van Dijk1, E Rosalie Paalberends, Aref Najafi
1Laboratory for Physiology, Institute for Cardiovascular Research, VU University Medical Center, Amsterdam, The Netherlands.
Insights
Sarcomere dysfunction in hypertrophic cardiomyopathy (HCM) is similar regardless of the specific MYBPC3 mutation, indicating a common deficit in HCM that impacts heart function and progression.
Area of Science:
- Cardiovascular Biology
- Molecular Cardiology
- Genetic Diseases
Background:
- Hypertrophic cardiomyopathy (HCM) is often caused by mutations in sarcomeric proteins, leading to left ventricular hypertrophy.
- The study investigates whether sarcomeric property alterations in HCM are mutation-dependent.
Purpose of the Study:
- To determine if changes in sarcomeric properties in hypertrophic cardiomyopathy (HCM) are influenced by the specific underlying protein mutation.
- To compare sarcomeric function in HCM patients with and without identified MYBPC3 mutations.
Main Methods:
- Cardiac samples from MYBPC3 mutation carriers (MYBPC3mut), mutation-negative HCM patients (HCMmn), and non-failing donors were analyzed.
- Myosin binding protein C (cMyBP-C) and Troponin I phosphorylation levels were measured.
- Single permeabilized cardiomyocyte force measurements assessed maximal force, myofilament Ca2+-sensitivity, and sarcomere length-dependent activation.
Main Results:
- HCM patients (both groups) exhibited impaired diastolic function, lower maximal force generating capacity, and higher myofilament Ca2+-sensitivity compared to donors.
- Sarcomere length-dependent increase in Ca2+-sensitivity was reduced in both HCM patient groups.
- Protein kinase A treatment normalized Ca2+-sensitivity and length-dependent activation in patient samples.
Conclusions:
- Sarcomere dysfunction in human hypertrophic cardiomyopathy (HCM) is a common finding, irrespective of the specific MYBPC3 mutation.
- These hypocontractile sarcomeres may contribute to disease progression in HCM patients with preserved systolic function.
Background:
Hypertrophic cardiomyopathy (HCM), typically characterized by asymmetrical left ventricular hypertrophy, frequently is caused by mutations in sarcomeric proteins. We studied if changes in sarcomeric properties in HCM depend on the underlying protein mutation.
Methods And Results:
Comparisons were made between cardiac samples from patients carrying a MYBPC3 mutation (MYBPC3(mut); n=17), mutation negative HCM patients without an identified sarcomere mutation (HCM(mn); n=11), and nonfailing donors (n=12). All patients had normal systolic function, but impaired diastolic function. Protein expression of myosin binding protein C (cMyBP-C) was significantly lower in MYBPC3(mut) by 33±5%, and similar in HCM(mn) compared with donor. cMyBP-C phosphorylation in MYBPC3(mut) was similar to donor, whereas it was significantly lower in HCM(mn). Troponin I phosphorylation was lower in both patient groups compared with donor. Force measurements in single permeabilized cardiomyocytes demonstrated comparable sarcomeric dysfunction in both patient groups characterized by lower maximal force generating capacity in MYBPC3(mut) and HCM(mn,) compared with donor (26.4±2.9, 28.0±3.7, and 37.2±2.3 kN/m(2), respectively), and higher myofilament Ca(2+)-sensitivity (EC(50)=2.5±0.2, 2.4±0.2, and 3.0±0.2 μmol/L, respectively). The sarcomere length-dependent increase in Ca(2+)-sensitivity was significantly smaller in both patient groups compared with donor (ΔEC(50): 0.46±0.04, 0.37±0.05, and 0.75±0.07 μmol/L, respectively). Protein kinase A treatment restored myofilament Ca(2+)-sensitivity and length-dependent activation in both patient groups to donor values.
Conclusions:
Changes in sarcomere function reflect the clinical HCM phenotype rather than the specific MYBPC3 mutation. Hypocontractile sarcomeres are a common deficit in human HCM with normal systolic left ventricular function and may contribute to HCM disease progression.
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