4.3 Article

Cardiac-specific overexpression of caveolin-3 preserves t-tubular ICa during heart failure in mice

Journal

EXPERIMENTAL PHYSIOLOGY
Volume 104, Issue 5, Pages 654-666

Publisher

WILEY
DOI: 10.1113/EP087304

Keywords

caveolin-3; excitation-contraction coupling; overexpression; t-tubules; TAC

Categories

Funding

  1. British Heart Foundation [RG/12/10/29802]
  2. National Institutes of Health [HL091071, HL066941, AG052722]
  3. Veterans Affairs Merit [BX001963, BX000783]

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What is the central question of this study? What is the cellular basis of the protection conferred on the heart by overexpression of caveolin-3 (Cav-3 OE) against many of the features of heart failure normally observed in vivo? What is the main finding and its importance? Cav-3 overexpression has little effect in normal ventricular myocytes but reduces cellular hypertrophy and preserves t-tubular I-Ca, but not local t-tubular Ca2+ release, in heart failure induced by pressure overload in mice. Thus Cav-3 overexpression provides specific but limited protection following induction of heart failure, although other factors disrupt Ca2+ release. AbstractCaveolin-3 (Cav-3) is an 18kDa protein that has been implicated in t-tubule formation and function in cardiac ventricular myocytes. During cardiac hypertrophy and failure, Cav-3 expression decreases, t-tubule structure is disrupted and excitation-contraction coupling (ECC) is impaired. Previous work has suggested that Cav-3 overexpression (OE) is cardio-protective, but the effect of Cav-3 OE on these cellular changes is unknown. We therefore investigated whether Cav-3 OE in mice is protective against the cellular effects of pressure overload induced by 8weeks' transverse aortic constriction (TAC). Cav-3 OE mice developed cardiac dilatation, decreased stroke volume and ejection fraction, and hypertrophy and pulmonary congestion in response to TAC. These changes were accompanied by cellular hypertrophy, a decrease in t-tubule regularity and density, and impaired local Ca2+ release at the t-tubules. However, the extent of cardiac and cellular hypertrophy was reduced in Cav-3 OE compared to WT mice, and t-tubular Ca2+ current (I-Ca) density was maintained. These data suggest that Cav-3 OE helps prevent hypertrophy and loss of t-tubular I-Ca following TAC, but that other factors disrupt local Ca2+ release.

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