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Myosin in autoinhibited off state(s), stabilized by mavacamten, can be recruited via inotropic effectors

Mavacamten is a novel, FDA-approved, small molecule therapeutic designed to regulate cardiac function by selectively but reversibly inhibiting the enzymatic activity of myosin. It shifts myosin towards ordered off states close to the thick filament backbone. It remains unresolved whether mavacamten...

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Autores principales: Ma, Weikang, del Rio, Carlos L., Qi, Lin, Prodanovic, Momcilo, Mijailovich, Srboljub, Zambataro, Christopher, Gong, Henry, Shimkunas, Rafael, Gollapudi, Sampath, Nag, Suman, Irving, Thomas C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10120679/
https://www.ncbi.nlm.nih.gov/pubmed/37090664
http://dx.doi.org/10.1101/2023.04.10.536292
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author Ma, Weikang
del Rio, Carlos L.
Qi, Lin
Prodanovic, Momcilo
Mijailovich, Srboljub
Zambataro, Christopher
Gong, Henry
Shimkunas, Rafael
Gollapudi, Sampath
Nag, Suman
Irving, Thomas C.
author_facet Ma, Weikang
del Rio, Carlos L.
Qi, Lin
Prodanovic, Momcilo
Mijailovich, Srboljub
Zambataro, Christopher
Gong, Henry
Shimkunas, Rafael
Gollapudi, Sampath
Nag, Suman
Irving, Thomas C.
author_sort Ma, Weikang
collection PubMed
description Mavacamten is a novel, FDA-approved, small molecule therapeutic designed to regulate cardiac function by selectively but reversibly inhibiting the enzymatic activity of myosin. It shifts myosin towards ordered off states close to the thick filament backbone. It remains unresolved whether mavacamten permanently sequesters these myosin heads in the off state(s) or whether these heads can be recruited in response to physiological stimuli when required to boost cardiac output. We show that cardiac myosins stabilized in these off state(s) by mavacamten are recruitable by Ca(2+), increased heart rate, stretch, and β-adrenergic (β-AR) stimulation, all known physiological inotropic effectors. At the molecular level, we show that, in presence of mavacamten, Ca(2+) increases myosin ATPase activity by shifting myosin heads from the reserve super-relaxed (SRX) state to the active disordered relaxed (DRX) state. At the myofilament level, both Ca(2+) and passive lengthening can shift ordered off myosin heads from positions close to the thick filament backbone to disordered on states closer to the thin filaments in the presence of mavacamten. In isolated rat cardiomyocytes, increased stimulation rates enhanced shortening fraction in mavacamten-treated cells. This observation was confirmed in vivo in telemetered rats, where left-ventricular dP/dt(max,) an index of inotropy, increased with heart rate in mavacamten treated animals. Finally, we show that β-AR stimulation in vivo increases left-ventricular function and stroke volume in the setting of mavacamten. Our data demonstrate that the mavacamten-promoted off states of myosin in the thick filament are activable, at least partially, thus leading to preservation of cardiac reserve mechanisms.
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spelling pubmed-101206792023-04-22 Myosin in autoinhibited off state(s), stabilized by mavacamten, can be recruited via inotropic effectors Ma, Weikang del Rio, Carlos L. Qi, Lin Prodanovic, Momcilo Mijailovich, Srboljub Zambataro, Christopher Gong, Henry Shimkunas, Rafael Gollapudi, Sampath Nag, Suman Irving, Thomas C. bioRxiv Article Mavacamten is a novel, FDA-approved, small molecule therapeutic designed to regulate cardiac function by selectively but reversibly inhibiting the enzymatic activity of myosin. It shifts myosin towards ordered off states close to the thick filament backbone. It remains unresolved whether mavacamten permanently sequesters these myosin heads in the off state(s) or whether these heads can be recruited in response to physiological stimuli when required to boost cardiac output. We show that cardiac myosins stabilized in these off state(s) by mavacamten are recruitable by Ca(2+), increased heart rate, stretch, and β-adrenergic (β-AR) stimulation, all known physiological inotropic effectors. At the molecular level, we show that, in presence of mavacamten, Ca(2+) increases myosin ATPase activity by shifting myosin heads from the reserve super-relaxed (SRX) state to the active disordered relaxed (DRX) state. At the myofilament level, both Ca(2+) and passive lengthening can shift ordered off myosin heads from positions close to the thick filament backbone to disordered on states closer to the thin filaments in the presence of mavacamten. In isolated rat cardiomyocytes, increased stimulation rates enhanced shortening fraction in mavacamten-treated cells. This observation was confirmed in vivo in telemetered rats, where left-ventricular dP/dt(max,) an index of inotropy, increased with heart rate in mavacamten treated animals. Finally, we show that β-AR stimulation in vivo increases left-ventricular function and stroke volume in the setting of mavacamten. Our data demonstrate that the mavacamten-promoted off states of myosin in the thick filament are activable, at least partially, thus leading to preservation of cardiac reserve mechanisms. Cold Spring Harbor Laboratory 2023-08-28 /pmc/articles/PMC10120679/ /pubmed/37090664 http://dx.doi.org/10.1101/2023.04.10.536292 Text en https://creativecommons.org/licenses/by-nd/4.0/This work is licensed under a Creative Commons Attribution-NoDerivatives 4.0 International License (https://creativecommons.org/licenses/by-nd/4.0/) , which allows reusers to copy and distribute the material in any medium or format in unadapted form only, and only so long as attribution is given to the creator. The license allows for commercial use.
spellingShingle Article
Ma, Weikang
del Rio, Carlos L.
Qi, Lin
Prodanovic, Momcilo
Mijailovich, Srboljub
Zambataro, Christopher
Gong, Henry
Shimkunas, Rafael
Gollapudi, Sampath
Nag, Suman
Irving, Thomas C.
Myosin in autoinhibited off state(s), stabilized by mavacamten, can be recruited via inotropic effectors
title Myosin in autoinhibited off state(s), stabilized by mavacamten, can be recruited via inotropic effectors
title_full Myosin in autoinhibited off state(s), stabilized by mavacamten, can be recruited via inotropic effectors
title_fullStr Myosin in autoinhibited off state(s), stabilized by mavacamten, can be recruited via inotropic effectors
title_full_unstemmed Myosin in autoinhibited off state(s), stabilized by mavacamten, can be recruited via inotropic effectors
title_short Myosin in autoinhibited off state(s), stabilized by mavacamten, can be recruited via inotropic effectors
title_sort myosin in autoinhibited off state(s), stabilized by mavacamten, can be recruited via inotropic effectors
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10120679/
https://www.ncbi.nlm.nih.gov/pubmed/37090664
http://dx.doi.org/10.1101/2023.04.10.536292
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