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Interaction of β1-adrenoceptor with RAGE mediates cardiomyopathy via CaMKII signaling
Weizhong Zhu, Sharon Tsang, David M. Browe, Anthony Y.H. Woo, Ying Huang, Chanjuan Xu, Jian-Feng Liu, Fengxiang Lv, Yan Zhang, Rui-ping Xiao
Weizhong Zhu, Sharon Tsang, David M. Browe, Anthony Y.H. Woo, Ying Huang, Chanjuan Xu, Jian-Feng Liu, Fengxiang Lv, Yan Zhang, Rui-ping Xiao
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Research Article Cardiology Cell biology

Interaction of β1-adrenoceptor with RAGE mediates cardiomyopathy via CaMKII signaling

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Abstract

Stimulation of β1-adrenergic receptor (β1AR), a GPCR, and the receptor for advanced glycation end-products (RAGE), a pattern recognition receptor (PRR), have been independently implicated in the pathogenesis of cardiomyopathy caused by various etiologies, including myocardial infarction, ischemia/reperfusion injury, and metabolic stress. Here, we show that the two distinctly different receptors, β1AR and RAGE, are mutually dependent in mediating myocardial injury and the sequelae of cardiomyopathy. Deficiency or inhibition of RAGE blocks β1AR- and RAGE-mediated myocardial cell death and maladaptive remodeling. Ablation or blockade of β1AR fully abolishes RAGE-induced detrimental effects. Mechanistically, RAGE and β1AR form a complex, which in turn activates Ca2+/calmodulin-dependent kinase II (CaMKII), resulting in loss of cardiomyocytes and myocardial remodeling. These results indicate that RAGE and β1AR not only physically crosstalk at the receptor level, but also functionally converge at the common mediator, CaMKII, highlighting a combined inhibition of RAGE and β1AR as a more effective therapy to treat diverse cardiovascular diseases, such as myocardial infarction, ischemia/reperfusion injury, and diabetic cardiovascular complications.

Authors

Weizhong Zhu, Sharon Tsang, David M. Browe, Anthony Y.H. Woo, Ying Huang, Chanjuan Xu, Jian-Feng Liu, Fengxiang Lv, Yan Zhang, Rui-ping Xiao

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Figure 7

Dimerization of β1AR and RAGE in HEK293 cells coexpressing β1AR and RAGE.

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Dimerization of β1AR and RAGE in HEK293 cells coexpressing β1AR and RAGE...
(A) Coimmunoprecipitation of β1AR with RAGE to indicate the interaction between these two receptors. HEK293 cells were transfected with either Flag-RAGE or HA-β1AR or both. Forty-eight hours after transfection, total cellular proteins were used for immunoprecipitation assay with anti-HA (for β1AR) (1:1,000) overnight. The precipitation was followed by Western blotting with anti-Flag (for RAGE) (1:1,000). The cellular lysate protein (30 µg) was used as a positive control for Flag-RAGE expression and anti-HA for loading control. The experiments were repeated 3 times. (B) FRET intensities in HEK293 cells’ coexpression of either HS-β1AR or FS-β1AR with FC-RAGE were expressed as the interaction of proteins between Snap and Clip. †P < 0.05 versus HS-β1AR or FC-RAGE; **P < 0.01 versus FS-β1AR or FC-RAGE; 1-way ANOVA. (C) Cell surface expression of β1AR and RAGE detected by Snap substrate (top panel) or Clip (bottom panel) fluorescence. **P < 0.05 versus Mock; 1-way ANOVA. The averaged data were expressed as mean ± SEM from 3 individual experiments with triplicates. β1AR, β1-adrenergic receptor; RAGE, receptor for advanced glycation end-products; HEK, human embryonic kidney; FRET, fluorescence resonance energy transfer; HS-β1AR, HA-SNAP-β1AR; FS-β1AR, Flag-SNAP-β1AR; FC-RAGE, Flag-Clip-RAGE; Tb, benzyl-guanines-Lumi4Tb; c.p.s., counts per second; Fluo, benzylcytosine-Fluorescein.

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