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Citations to this article

C-type natriuretic peptide moderates titin-based cardiomyocyte stiffness
Konstanze Michel, … , Nazha Hamdani, Michaela Kuhn
Konstanze Michel, … , Nazha Hamdani, Michaela Kuhn
Published October 15, 2020
Citation Information: JCI Insight. 2020;5(22):e139910. https://doi.org/10.1172/jci.insight.139910.
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Research Article Cardiology

C-type natriuretic peptide moderates titin-based cardiomyocyte stiffness

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Abstract

Heart failure is often accompanied by titin-dependent myocardial stiffness. Phosphorylation of titin by cGMP-dependent protein kinase I (PKGI) increases cardiomyocyte distensibility. The upstream pathways stimulating PKGI-mediated titin phosphorylation are unclear. We studied whether C-type natriuretic peptide (CNP), via its guanylyl cyclase-B (GC-B) receptor and cGMP/PKGI signaling, modulates titin-based ventricular compliance. To dissect GC-B–mediated effects of endogenous CNP in cardiomyocytes, we generated mice with cardiomyocyte-restricted GC-B deletion (CM GC-B–KO mice). The impact on heart morphology and function, myocyte passive tension, and titin isoform expression and phosphorylation was studied at baseline and after increased afterload induced by transverse aortic constriction (TAC). Pressure overload increased left ventricular endothelial CNP expression, with an early peak after 3 days. Concomitantly, titin phosphorylation at Ser4080, the site phosphorylated by PKGI, was augmented. Notably, in CM GC-B–KO mice this titin response was abolished. TAC-induced hypertrophy and fibrosis were not different between genotypes. However, the KO mice presented mild systolic and diastolic dysfunction together with myocyte stiffness, which were not observed in control littermates. In vitro, recombinant PKGI rescued reduced titin-Ser4080 phosphorylation and reverted passive stiffness of GC-B–deficient cardiomyocytes. CNP-induced activation of GC-B/cGMP/PKGI signaling in cardiomyocytes provides a protecting regulatory circuit preventing titin-based myocyte stiffening during early phases of pressure overload.

Authors

Konstanze Michel, Melissa Herwig, Franziska Werner, Katarina Špiranec Spes, Marco Abeßer, Kai Schuh, Swati Dabral, Andreas Mügge, Hideo A. Baba, Boris V. Skryabin, Nazha Hamdani, Michaela Kuhn

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Total citations by year

Year: 2024 2023 2022 2021 Total
Citations: 7 5 15 3 30
Citation information
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Citations to this article (30)

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The Impact of Natriuretic Peptides on Heart Development, Homeostasis, and Disease
Giovou AE, Gladka MM, Christoffels VM
Cells 2024
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International journal of molecular sciences 2024
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Scientific reports 2024
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JCI Insight 2023
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International journal of molecular sciences 2022
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Frontiers in Cardiovascular Medicine 2022
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