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November 1, 2010Journal of Clinical Investigation346 citationsOpen Access

T-cadherin is critical for adiponectin-mediated cardioprotection in mice

MDMartin S. DenzelMSMaria-Cecilia ScimiaPZPhiline Zumstein

Key Result

T-cadherin deficiency in mice abolished the cardioprotective effects of adiponectin against pressure overload-induced hypertrophy and ischemia-reperfusion injury.

Structured PICO

Does T-cadherin mediate adiponectin's cardioprotective effects against stress-induced pathological cardiac remodeling in mice?

P
Population
8- to 12-week-old male C57BL/6 wild-type and knockout mice subjected to transverse aortic constriction or ischemia-reperfusion injury to study cardioprotection.
I
Intervention
T-cadherin deficiency and/or adiponectin deficiency, with or without recombinant adenovirus-expressed adiponectin (adAPN) rescue.
C
Comparator
Wild-type mice, sham surgery, or control adenovirus (adGFP).
O
Outcome
Cardiac hypertrophy (heart weight/body weight ratio, LV posterior wall thickness, myocyte cross-sectional area), infarct size, and AMPK phosphorylation.surrogate

T-cadherin is the critical cardiac receptor for adiponectin, required for its AMPK-mediated cardioprotective effects against hypertrophy and ischemia-reperfusion injury.

Limitations

  • The exact molecular mechanism by which T-cadherin transmits the binding signal to intracellular signaling pathways remains to be determined.
  • Cell type-specific contributions of T-cadherin need further evaluation.

Abstract

The circulating, adipocyte-secreted hormone adiponectin (APN) exerts protective effects on the heart under stress conditions. The receptors binding APN to cardiac tissue, however, have remained elusive. Here, we report that the glycosyl phosphatidylinositol–anchored cell surface glycoprotein T-cadherin (encoded by Cdh13) protects against cardiac stress through its association with APN in mice. We observed extensive colocalization of T-cadherin and APN on cardiomyocytes in vivo. In T-cadherin-deficient mice, APN failed to associate with cardiac tissue, and its levels dramatically increased in the circulation. Pressure overload stress resulted in exacerbated cardiac hypertrophy in T-cadherin-null mice and paralleled corresponding defects in mice lacking APN. During ischemia-reperfusion injury, the absence of T-cadherin increased infarct size similar to that in APN-null mice. Myocardial AMPK is a major downstream protective signaling target of APN. In both cardiac hypertrophy and ischemia-reperfusion models, T-cadherin was necessary for APN-dependent AMPK phosphorylation. In APN-null mice, recombinant adenovirus-expressed APN reduced exaggerated hypertrophy and infarct size and restored AMPK phosphorylation as previously reported. In contrast, rescue was ineffective in mice lacking T-cadherin in addition to APN. These data suggest that T-cadherin protects from stress-induced pathological cardiac remodeling by binding APN and activating its cardioprotective functions.

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Cite This Study

Denzel et al. (2010) studied Cardiac hypertrophy and ischemia-reperfusion injury. T-cadherin knockout and recombinant adiponectin (adAPN) vs. Wild-type mice or adGFP control was evaluated on Cardiac hypertrophy and infarct size. T-cadherin deficiency in mice abolished the cardioprotective effects of adiponectin against pressure overload-induced hypertrophy and ischemia-reperfusion injury.

synapsesocial.com/papers/6a3f75a4f157b8c38b07bff1https://doi.org/10.1172/jci43464
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Effects of Adiponectin on Diastolic Function in Mice Underwent Transverse Aorta Constriction2019 · 10 citations
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