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βIV-Spectrin regulates STAT3 targeting to tune cardiac response to pressure overload
Sathya D. Unudurthi, … , Peter J. Mohler, Thomas J. Hund
Sathya D. Unudurthi, … , Peter J. Mohler, Thomas J. Hund
Published September 18, 2018
Citation Information: J Clin Invest. 2018;128(12):5561-5572. https://doi.org/10.1172/JCI99245.
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Research Article Cardiology

βIV-Spectrin regulates STAT3 targeting to tune cardiac response to pressure overload

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Abstract

Heart failure (HF) remains a major source of morbidity and mortality in the US. The multifunctional Ca2+/calmodulin-dependent kinase II (CaMKII) has emerged as a critical regulator of cardiac hypertrophy and failure, although the mechanisms remain unclear. Previous studies have established that the cytoskeletal protein βIV-spectrin coordinates local CaMKII signaling. Here, we sought to determine the role of a spectrin-CaMKII complex in maladaptive remodeling in HF. Chronic pressure overload (6 weeks of transaortic constriction [TAC]) induced a decrease in cardiac function in WT mice but not in animals expressing truncated βIV-spectrin lacking spectrin-CaMKII interaction (qv3J mice). Underlying the observed differences in function was an unexpected differential regulation of STAT3-related genes in qv3J TAC hearts. In vitro experiments demonstrated that βIV-spectrin serves as a target for CaMKII phosphorylation, which regulates its stability. Cardiac-specific βIV-spectrin–KO (βIV-cKO) mice showed STAT3 dysregulation, fibrosis, and decreased cardiac function at baseline, similar to what was observed with TAC in WT mice. STAT3 inhibition restored normal cardiac structure and function in βIV-cKO and WT TAC hearts. Our studies identify a spectrin-based complex essential for regulation of the cardiac response to chronic pressure overload. We anticipate that strategies targeting the new spectrin-based “statosome” will be effective at suppressing maladaptive remodeling in response to chronic stress.

Authors

Sathya D. Unudurthi, Drew Nassal, Amara Greer-Short, Nehal Patel, Taylor Howard, Xianyao Xu, Birce Onal, Tony Satroplus, Deborah Hong, Cemantha Lane, Alyssa Dalic, Sara N. Koenig, Adam C. Lehnig, Lisa A. Baer, Hassan Musa, Kristin I. Stanford, Sakima Smith, Peter J. Mohler, Thomas J. Hund

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Figure 1

The qv3J allele prevents pressure overload–induced pathological remodeling.

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The qv3J allele prevents pressure overload–induced pathological remodeli...
(A) Representative echocardiograms from WT and qv3J animals at baseline and following 6 weeks of TAC. (B–F) Summary data (mean ± SEM) for the echocardiographic features in WT and qv3J animals 6 weeks after TAC or sham surgery. *P < 0.05 versus sham; #P < 0.05 versus WT, by 2-tailed t test. n = 8 for WT and qv3J sham echocardiographic parameters; n = 13 for WT and qv3J TAC echocardiographic parameters. LVID, d, LV internal dimension at end diastole; LVAW, d, LV anterior wall thickness at end diastole; LVPW, d, LV posterior wall thickness at end diastole.

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ISSN: 0021-9738 (print), 1558-8238 (online)

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