Kerfant Benoit-Gilles, Gidrewicz Dominica, Sun Hui, Oudit Gavin Y, Penninger Josef M, Backx Peter H
Department of Physiology, Heart & Stroke Richard Lewar Centre, and Division of Cardiology, University Health Network, University of Toronto, Toronto, Canada.
Circ Res. 2005 May 27;96(10):1079-86. doi: 10.1161/01.RES.0000168066.06333.df. Epub 2005 Apr 28.
We recently showed that phosphoinositide-3-kinase-gamma-deficient (PI3Kgamma-/-) mice have increased cardiac contractility without changes in heart size compared with control mice (ie, PI3Kgamma+/+ or PI3Kgamma+/-). In this study, we show that PI3Kgamma-/- cardiomyocytes have elevated Ca2+ transient amplitudes with abbreviated decay kinetics compared with control under field-stimulation and voltage-clamp conditions. When Ca2+ transients were eliminated with high Ca2+ buffering, L-type Ca2+ currents (I(Ca,L)), K+ currents, and action potential duration (APD) were not different between the groups, whereas, in the presence of Ca2+ transients, Ca2+-dependent phase of I(Ca,L) inactivation was abbreviated and APD at 90% repolarization was prolonged in PI3Kgamma-/- mice. Excitation-contraction coupling (ECC) gain, sarcoplasmic reticulum (SR) Ca2+ load, and SR Ca(2+) release fluxes measured as Ca2+ spikes, were also increased in PI3Kgamma-/- cardiomyocytes without detectable changes in Ca2+ spikes kinetics. The cAMP inhibitor Rp-cAMP eliminated enhanced ECC and SR Ca2+ load in PI3Kgamma-/- without effects in control myocytes. On the other hand, the beta-adrenergic receptor agonist isoproterenol increased I(Ca,L) and Ca2+ transient equally by approximately 2-fold in both PI3Kgamma-/- and PI3Kgamma+/- cardiomyocytes. Our results establish that PI3Kgamma reduces cardiac contractility in a highly compartmentalized manner by inhibiting cAMP-mediated SR Ca2+ loading without directly affecting other major modulators of ECC, such as AP and I(Ca,L).
我们最近发现,与对照小鼠(即PI3Kγ+/+或PI3Kγ+/-)相比,磷酸肌醇-3-激酶γ缺陷(PI3Kγ-/-)小鼠的心脏收缩力增强,而心脏大小没有变化。在本研究中,我们发现,在电场刺激和电压钳条件下,与对照相比,PI3Kγ-/-心肌细胞的Ca2+瞬变幅度升高,衰减动力学缩短。当用高Ca2+缓冲消除Ca2+瞬变时,各组之间的L型Ca2+电流(I(Ca,L))、K+电流和动作电位持续时间(APD)没有差异,然而,在存在Ca2+瞬变的情况下,PI3Kγ-/-小鼠中I(Ca,L)失活的Ca2+依赖性阶段缩短,90%复极化时的APD延长。PI3Kγ-/-心肌细胞的兴奋-收缩偶联(ECC)增益、肌浆网(SR)Ca2+负荷以及以Ca2+尖峰测量的SR Ca(2+)释放通量也增加,而Ca2+尖峰动力学没有可检测到的变化。cAMP抑制剂Rp-cAMP消除了PI3Kγ-/-中增强的ECC和SR Ca2+负荷,而对对照心肌细胞没有影响。另一方面,β-肾上腺素能受体激动剂异丙肾上腺素在PI3Kγ-/-和PI3Kγ+/-心肌细胞中均使I(Ca,L)和Ca2+瞬变同等程度地增加约2倍。我们的结果表明,PI3Kγ通过抑制cAMP介导的SR Ca2+负荷,以高度分隔的方式降低心脏收缩力,而不直接影响ECC的其他主要调节因子,如动作电位和I(Ca,L)。