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Microscale thermophoresis suggests a new model of regulation of cardiac myosin function via interaction with cardiac myosin-binding protein C
- Source :
- The Journal of Biological Chemistry
- Publication Year :
- 2021
-
Abstract
- The cardiac isoform of myosin-binding protein C (cMyBP-C) is a key regulatory protein found in cardiac myofilaments that can control the activation state of both the actin-containing thin and myosin-containing thick filaments. However, in contrast to thin filament–based mechanisms of regulation, the mechanism of myosin-based regulation by cMyBP-C has yet to be defined in detail. To clarify its function in this process, we used microscale thermophoresis to build an extensive interaction map between cMyBP-C and isolated fragments of β-cardiac myosin. We show here that the regulatory N-terminal domains (C0C2) of cMyBP-C interact with both the myosin head (myosin S1) and tail domains (myosin S2) with micromolar affinity via phosphorylation-independent and phosphorylation-dependent interactions of domain C1 and the cardiac-specific m-motif, respectively. Moreover, we show that the interaction sites with the highest affinity between cMyBP-C and myosin S1 are localized to its central domains, which bind myosin with submicromolar affinity. We identified two separate interaction regions in the central C2C4 and C5C7 segments that compete for the same binding site on myosin S1, suggesting that cMyBP-C can crosslink the two myosin heads of a single myosin molecule and thereby stabilize it in the folded OFF state. Phosphorylation of the cardiac-specific m-motif by protein kinase A had no effect on the binding of either the N-terminal or the central segments to the myosin head domain, suggesting this might therefore represent a constitutively bound state of myosin associated with cMyBP-C. Based on our results, we propose a new model of regulation of cardiac myosin function by cMyBP-C.
- Subjects :
- Sarcomeres
HCM, hypertrophic cardiomyopathy
NTF, native thin filament
cardiac muscle regulation
MST, microscale thermophoresis
P/A, proline- and alanine-rich
macromolecular substances
Myosins
C0C2-3P, Tris-phosphorylated C0C2
Biochemistry
TEV, tobacco etch virus
IHM, interacting-heads motif
RLC, regulatory light chain
NTD, N-terminal domain
Phosphorylation
Molecular Biology
C0C2, cMyBP-C spanning domains C0 to C2
ESI, electrospray ionization
Myocardium
myosin S2Δ, myosin subfragment-2
myosin-binding protein C
Cell Biology
hypertrophic cardiomyopathy
Ig, immunoglobulin
cMLCK, cardiac isoform of myosin light chain kinase
cMyBP-C, cardiac isoform of myosin-binding protein C
cardiac myosin
PKA, protein kinase A
Carrier Proteins
Cardiac Myosins
Research Article
Subjects
Details
- ISSN :
- 1083351X
- Volume :
- 298
- Issue :
- 1
- Database :
- OpenAIRE
- Journal :
- The Journal of biological chemistry
- Accession number :
- edsair.doi.dedup.....7cef65eda5396fba4700cacbee677366