Target intelligence / Profile preview

Cardiac myosin heavy chain (MYH7) (MYH7)

Target
MYH7
Molecular classification
Motor protein, ATPase, Myosin family
01

Overview

Cardiac myosin heavy chain (MYH7) is the fundamental motor protein of the cardiac sarcomere, primarily expressed in the ventricles [UniProt P12883]. It functions as an ATPase that converts chemical energy into mechanical work, driving the sliding of thick and thin filaments during muscle contraction [PubMed: 29438114]. The C-zone of the thick filament is a critical regulatory region where MYH7 interacts with cardiac myosin-binding protein C (cMyBP-C) to maintain a super-relaxed state (SRX), characterized by very low ATP consumption and sequestered myosin heads [PubMed: 31524110]. Mutations in MYH7 or disruptions in this regulatory zone are central to the pathogenesis of hypertrophic cardiomyopathy (HCM), leading to hypercontractility and diastolic dysfunction [PubMed: 32493630]. Modern therapeutic strategies involve small-molecule modulators like mavacamten, which bind to MYH7 to stabilize the SRX state and reduce the number of active cross-bridges [FDA: Camzyos Label]. This targeted approach helps normalize cardiac output and reduce the left ventricular outflow tract obstruction seen in HCM patients [PubMed: 32931332].

Other names
Beta-myosin heavy chainMyosin-7Cardiac muscle beta myosin heavy chainMYH7Slow-twitch skeletal muscle myosin heavy chain
02

Mechanism of action

Modulation of the myosin ATPase cycle; cardiac myosin inhibitors (e.g., mavacamten) stabilize the super-relaxed state (SRX) and reduce the number of myosin heads available for cross-bridge formation, while cardiac myosin activators (e.g., omecamtiv mecarbil) increase the rate of phosphate release to enhance force production [PubMed: 32493630, PubMed: 21330487].

03

Biological functions

Muscle contractionATP hydrolysisForce generationSarcomere assembly
04

Disease associations

Hypertrophic cardiomyopathyDilated cardiomyopathyLeft ventricular non-compactionRestrictive cardiomyopathyLaing distal myopathy
05

Safety considerations

Reduced left ventricular ejection fraction (LVEF)Heart failureDrug-drug interactions (CYP2C19/CYP3A4 metabolism)Embryo-fetal toxicity
06

Interacting drugs

Mavacamten

3 more in the full profile.

07

Biomarkers

N-terminal pro-b-type natriuretic peptide (NT-proBNP)Cardiac troponin I/TLeft ventricular ejection fraction (LVEF)Left ventricular outflow tract (LVOT) gradient

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