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August 1, 1997The Journal of General Physiology188 citationsOpen Access

Increased Expression of the Cardiac L-type Calcium Channel in Estrogen Receptor–deficient Mice

BJBarry D. JohnsonUniversity of WashingtonWZWei ZhengTongji UniversityKKKenneth S. KorachNational Institute of Environmental Health Sciences

Structured PICO

Does estrogen receptor deficiency alter cardiac L-type calcium channel expression and activity in male mice?

P
Population
Male mice in which the estrogen receptor gene had been disrupted (ERKO mice) and control mice
I
Intervention
Estrogen receptor gene disruption (ERKO)
C
Comparator
Control mice
O
Outcome
L-type Ca2+ channel expression and activity (isradipine binding, Ca2+ channel current, action potential duration, and ECG parameters)surrogate

Estrogen receptor deficiency increases cardiac L-type calcium channel density and prolongs the QT interval, suggesting a mechanism linking decreased estrogen to increased arrhythmia risk.

Abstract

Steroid hormones control the expression of many cellular regulators, and a role for estrogen in cardiovascular function and disease has been well documented. To address whether the activity of the L-type Ca2+ channel, a critical element in cardiac excitability and contractility, is altered by estrogen and its nuclear receptor, we examined cardiac myocytes from male mice in which the estrogen receptor gene had been disrupted (ERKO mice). Binding of dihydropyridine Ca2+ channel antagonist isradipine (PN200-110) was increased 45.6% in cardiac membranes from the ERKO mice compared to controls, suggesting that a lack of estrogen receptors in the heart increased the number of Ca2+ channels. Whole-cell patch clamp of acutely dissociated adult cardiac ventricular myocytes indicated that Ca2+ channel current was increased by 49% and action potential duration was increased by 75%. Examination of electrocardiogram parameters in ERKO mice showed a 70% increase in the QT interval without significant changes in PQ or QRS intervals. These results show that the membrane density of the cardiac L-type Ca2+ channel is regulated by the estrogen receptor and suggest that decreased estrogen may lead to an increase in the number of cardiac L-type Ca2+ channels, abnormalities in cardiac excitability, and increased risk of arrhythmia and cardiovascular disease.

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Cite This Study

Johnson et al. (1997) studied this question.

synapsesocial.com/papers/6a6ff81853da1ffdb50799a9https://doi.org/10.1085/jgp.110.2.135
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