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Expression of a sorcin missense mutation in the heart modulates excitation-contraction coupling
Leon P Collis1, Marian B Meyers, Jie Zhang
1Division of Pediatric Cardiology, New York University School of Medicine, New York, NY 10016, USA.
Abstract:
Sorcin is a Ca2+ binding protein implicated in the regulation of intracellular Ca2+ cycling and cardiac excitation-contraction coupling. Structural and human genetic studies suggest that a naturally occurring sequence variant encoding L112-sorcin disrupts an E-F hand Ca2+ binding domain and may be responsible for a heritable form of hypertension and hypertrophic heart disease. We generated transgenic mice overexpressing L112-sorcin in the heart and characterized the effects on Ca2+ regulation and cardiac function both in vivo and in dissociated cardiomyocytes. Hearts of sorcin(F112L) transgenic mice were mildly dilated but ventricular function was preserved and systemic blood pressure was normal. Sorcin(F112L) myocytes were smaller than control cells and displayed complex alterations in Ca2+ regulation and contractility, including a slowed inactivation of L-type Ca2+ current, enhanced Ca2+ spark width, duration, and frequency, and increased Na+-Ca2+ exchange activity. In contrast, mice with cardiac-specific overexpression of wild-type sorcin displayed directionally opposite effects on L-type Ca2+ channel function and Ca2+ spark behavior. These data further define the role of sorcin in cardiac excitation-contraction coupling and highlight its negative regulation of SR calcium release. Our results also suggest that additional factors may be responsible for the development of cardiac hypertrophy and hypertension in humans expressing the L112-sorcin sequence variant.
Insights
The L112-sorcin variant impacts cardiac calcium regulation but does not cause hypertension or heart disease in mice, suggesting other factors are involved in human cardiac conditions.
Area of Science:
- Cardiovascular Biology
- Molecular Cardiology
- Calcium Signaling
Background:
- Sorcin is a calcium (Ca2+) binding protein crucial for cardiac excitation-contraction coupling.
- A human genetic variant, L112-sorcin, may link to heritable hypertension and hypertrophic heart disease by disrupting Ca2+ binding.
Purpose of the Study:
- To investigate the in vivo and cellular effects of L112-sorcin overexpression on cardiac function and Ca2+ handling.
- To elucidate the role of sorcin in regulating cardiac excitation-contraction coupling and SR calcium release.
Main Methods:
- Generation of transgenic mice overexpressing L112-sorcin in the heart.
- In vivo assessment of cardiac function and systemic blood pressure.
- Electrophysiological and Ca2+ imaging studies on isolated cardiomyocytes.
Main Results:
- L112-sorcin overexpression led to mild cardiac dilation but preserved ventricular function and normal blood pressure in mice.
- L112-sorcin cardiomyocytes exhibited altered Ca2+ regulation, including slowed L-type Ca2+ current inactivation and increased Ca2+ spark activity.
- Wild-type sorcin overexpression produced opposite effects on Ca2+ handling compared to the L112-sorcin variant.
Conclusions:
- Sorcin negatively regulates SR calcium release, impacting cardiac excitation-contraction coupling.
- The L112-sorcin variant's effects in mice suggest other factors contribute to human cardiac hypertrophy and hypertension.
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