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Rad regulation of CaV1.2 channels controls cardiac fight-or-flight response

Publication ,  Journal Article
Papa, A; Zakharov, SI; Katchman, AN; Kushner, JS; Chen, BX; Yang, L; Liu, G; Jimenez, AS; Eisert, RJ; Bradshaw, GA; Dun, W; Ali, SR; Zhou, K ...
Published in: Nature Cardiovascular Research
November 1, 2022

Fight-or-flight responses involve β-adrenergic-induced increases in heart rate and contractile force. In the present study, we uncover the primary mechanism underlying the heart’s innate contractile reserve. We show that four protein kinase A (PKA)-phosphorylated residues in Rad, a calcium channel inhibitor, are crucial for controlling basal calcium current and essential for β-adrenergic augmentation of calcium influx in cardiomyocytes. Even with intact PKA signaling to other proteins modulating calcium handling, preventing adrenergic activation of calcium channels in Rad-phosphosite-mutant mice (4SA-Rad) has profound physiological effects: reduced heart rate with increased pauses, reduced basal contractility, near-complete attenuation of β-adrenergic contractile response and diminished exercise capacity. Conversely, expression of mutant calcium-channel β-subunits that cannot bind 4SA-Rad is sufficient to enhance basal calcium influx and contractility to adrenergically augmented levels of wild-type mice, rescuing the failing heart phenotype of 4SA-Rad mice. Hence, disruption of interactions between Rad and calcium channels constitutes the foundation toward next-generation therapeutics specifically enhancing cardiac contractility.

Duke Scholars

Published In

Nature Cardiovascular Research

DOI

EISSN

2731-0590

Publication Date

November 1, 2022

Volume

1

Issue

11

Start / End Page

1022 / 1038
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Papa, A., Zakharov, S. I., Katchman, A. N., Kushner, J. S., Chen, B. X., Yang, L., … Marx, S. O. (2022). Rad regulation of CaV1.2 channels controls cardiac fight-or-flight response. Nature Cardiovascular Research, 1(11), 1022–1038. https://doi.org/10.1038/s44161-022-00157-y
Papa, A., S. I. Zakharov, A. N. Katchman, J. S. Kushner, B. X. Chen, L. Yang, G. Liu, et al. “Rad regulation of CaV1.2 channels controls cardiac fight-or-flight response.” Nature Cardiovascular Research 1, no. 11 (November 1, 2022): 1022–38. https://doi.org/10.1038/s44161-022-00157-y.
Papa A, Zakharov SI, Katchman AN, Kushner JS, Chen BX, Yang L, et al. Rad regulation of CaV1.2 channels controls cardiac fight-or-flight response. Nature Cardiovascular Research. 2022 Nov 1;1(11):1022–38.
Papa, A., et al. “Rad regulation of CaV1.2 channels controls cardiac fight-or-flight response.” Nature Cardiovascular Research, vol. 1, no. 11, Nov. 2022, pp. 1022–38. Scopus, doi:10.1038/s44161-022-00157-y.
Papa A, Zakharov SI, Katchman AN, Kushner JS, Chen BX, Yang L, Liu G, Jimenez AS, Eisert RJ, Bradshaw GA, Dun W, Ali SR, Rodriques A, Zhou K, Topkara V, Yang M, Morrow JP, Tsai EJ, Karlin A, Wan E, Kalocsay M, Pitt GS, Colecraft HM, Ben-Johny M, Marx SO. Rad regulation of CaV1.2 channels controls cardiac fight-or-flight response. Nature Cardiovascular Research. 2022 Nov 1;1(11):1022–1038.

Published In

Nature Cardiovascular Research

DOI

EISSN

2731-0590

Publication Date

November 1, 2022

Volume

1

Issue

11

Start / End Page

1022 / 1038