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BIN1 knockdown rescues systolic dysfunction in the aging heart
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Abstract
Cardiac dysfunction is a hallmark of aging in humans and mice. Here we report that a two-week treatment to restore youthful Bridging Integrator 1 (BIN1) levels in the hearts of 24-month-old mice rejuvenated cardiac function and substantially reversed the aging phenotype. Our data indicate that age-associated overexpression of BIN1 occurs alongside dysregulated endosomal recycling and disrupted trafficking of cardiac Ca
V
1.2 and type 2 ryanodine receptors. These deficiencies affect channel function at rest and their upregulation during acute stress.
In vivo
echocardiography revealed reduced systolic function in old mice. BIN1 knockdown using an adeno-associated virus serotype 9 packaged shRNA-mBIN1 restored the nanoscale distribution and clustering plasticity of ryanodine receptors and recovered Ca
2+
transient amplitudes and cardiac systolic function toward youthful levels. Enhanced systolic function correlated with increased phosphorylation of the myofilament protein cardiac myosin binding protein-C. These results reveal BIN1 knockdown as a novel therapeutic strategy to rejuvenate the aging myocardium.
Graphical Abstract
Title: BIN1 knockdown rescues systolic dysfunction in the aging heart
Description:
Abstract
Cardiac dysfunction is a hallmark of aging in humans and mice.
Here we report that a two-week treatment to restore youthful Bridging Integrator 1 (BIN1) levels in the hearts of 24-month-old mice rejuvenated cardiac function and substantially reversed the aging phenotype.
Our data indicate that age-associated overexpression of BIN1 occurs alongside dysregulated endosomal recycling and disrupted trafficking of cardiac Ca
V
1.
2 and type 2 ryanodine receptors.
These deficiencies affect channel function at rest and their upregulation during acute stress.
In vivo
echocardiography revealed reduced systolic function in old mice.
BIN1 knockdown using an adeno-associated virus serotype 9 packaged shRNA-mBIN1 restored the nanoscale distribution and clustering plasticity of ryanodine receptors and recovered Ca
2+
transient amplitudes and cardiac systolic function toward youthful levels.
Enhanced systolic function correlated with increased phosphorylation of the myofilament protein cardiac myosin binding protein-C.
These results reveal BIN1 knockdown as a novel therapeutic strategy to rejuvenate the aging myocardium.
Graphical Abstract.
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