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May 7, 2026Nature Cardiovascular Research0 citationsOpen Access

CAMK2D causes heart failure in mice with RBM20 cardiomyopathy

MHMaarten M. G. van den HoogenhofJDJavier DuranTBThiago Britto-Borges

Key Result

In mouse models of RBM20 cardiomyopathy, genetic deletion of Camk2d or pharmacological inhibition with hesperadin improved cardiac function and reduced mortality after arrhythmia induction.

Key Points

  • This research aims to determine the role of CAMK2D in the pathogenesis of RBM20-related cardiomyopathy and its implications for treatment.
  • Used Rbm20/Camk2d double knockout mice to study heart failure and cardiac function.
  • Investigated the effects of CAMK2D splice variants and inhibition on cardiac dysfunction.
  • Administered ATP-competitive CAMK2 inhibitor hesperadin in Rbm20-p.Arg636Gln knockin mice.
  • Double knockout mice showed protection from heart failure and reduced risk of sudden cardiac death.
  • Increased phosphorylation of CAMK2D targets was observed in Rbm20-deficient hearts, indicating overactivation.
  • Hesperadin treatment resulted in improved cardiac function in Rbm20-p.Arg636Gln knockin mice.

Structured PICO

Does CAMK2D inhibition improve cardiac function and prevent sudden cardiac death in models of RBM20 cardiomyopathy?

P
Population
Mouse models of RBM20 cardiomyopathy (Rbm20 KO, Rbm20/Camk2d DKO, Rbm20-p.Arg636Gln KI, Rbm20-p.Pro635Leu KI) and human iPS cell-derived cardiomyocytes with RBM20 variants.
I
Intervention
Genetic deletion of Camk2d, AAV9-mediated reexpression of CAMK2D splice variants, or pharmacological inhibition with hesperadin (2.5 μg or 5 μg/kg for 4 weeks).
C
Comparator
Wild-type mice, Rbm20 KO mice, or vehicle (DMSO) treated mice.
O
Outcome
Cardiac function (ejection fraction, LVIDd, E/e') and survival after epinephrine/caffeine-induced arrhythmia.surrogate

CAMK2D overactivation, rather than mis-splicing alone, drives heart failure in RBM20 cardiomyopathy, making CAMK2D inhibition a promising therapeutic target.

Main Result

Absolute Event Rate: 37.5% vs 71%

p-value: p=0.007

Limitations

  • AAV-mediated overexpression cannot precisely be controlled and variations in the amount and mosaic patterns may limit the interpretation.
  • Hesperadin is not perfectly selective for CAMK2 and also inhibits other kinases such as Aurora kinase B, AMPK, Lck, MKK1, MAPKAP-K1, CHK1 and PHK.
  • AAV-mediated overexpression cannot precisely be controlled
  • Variations in the amount and mosaic patterns may limit the interpretation of the approach

Abstract

Although heart disease arises from different etiologies, treatment remains largely one-size-fits-all, leaving many patients without optimal benefit, which highlights the need for cause-directed therapies. Pathogenic variants in RBM20, a cardiac splicing factor, lead to an aggressive form of dilated cardiomyopathy with high risk of ventricular arrhythmias. We hypothesized that the splicing target calcium/calmodulin-dependent kinase II delta (CAMK2D) is disease causing in RBM20 cardiomyopathy. Here we show that Rbm20/Camk2d double knockout mice are protected from heart failure and sudden cardiac death. In Rbm20-deficient hearts, phosphorylation of CAMK2D targets was increased, indicating that RBM20 loss results not only in mis-splicing of Camk2d transcripts but also in functional activation of CAMK2D signaling. Reexpression of individual CAMK2D splice variants in Rbm20/Camk2d double knockout mice reintroduced cardiac dysfunction, demonstrating that overactivation, rather than mis-splicing, drives disease. Treatment of Rbm20-p.Arg636Gln knockin mice with the ATP-competitive CAMK2 inhibitor hesperadin improved cardiac function. These findings identify CAMK2D overactivation as a central mechanism in RBM20 cardiomyopathy and support CAMK2D inhibition as a promising cause-directed therapy.

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Cite This Study

Hoogenhof et al. (2026) studied RBM20 cardiomyopathy. Genetic deletion of Camk2d or hesperadin vs. Wild-type or vehicle-treated mice was evaluated on Mortality within 24 hours after arrhythmia induction (p=0.007). In mouse models of RBM20 cardiomyopathy, genetic deletion of Camk2d or pharmacological inhibition with hesperadin improved cardiac function and reduced mortality after arrhythmia induction.

synapsesocial.com/papers/69fc2ba98b49bacb8b34797ehttps://doi.org/10.1038/s44161-026-00818-2
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