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腺苷酸环化酶介导的效应有助于增强异丙肾上腺素诱导的TRPM4基因敲除小鼠的心脏收缩力。

Adenylyl cyclase-mediated effects contribute to increased Isoprenaline-induced cardiac contractility in TRPM4-deficient mice.

作者信息

Uhl Sebastian, Mathar Ilka, Vennekens Rudi, Freichel Marc

机构信息

Pharmakologisches Institut, Universität Heidelberg, Im Neuenheimer Feld 366, D-69120 Heidelberg, Germany.

Pharmakologisches Institut, Universität Heidelberg, Im Neuenheimer Feld 366, D-69120 Heidelberg, Germany; Laboratory of Ion Channel Research, Department of Molecular and Cellular Biology, Katholieke Universiteit Leuven, Campus Gasthuisberg, Herestraat 49, B-3000 Leuven, Belgium.

出版信息

J Mol Cell Cardiol. 2014 Sep;74:307-17. doi: 10.1016/j.yjmcc.2014.06.007. Epub 2014 Jun 24.

Abstract

TRPM4 and TRPM5 proteins belong to the Transient Receptor Potential (TRP) ion channel family and form Ca(2+)-activated nonselective cation channels. Recently we showed a significant increase of Isoprenaline-induced inotropy in TRPM4-deficient (Trpm4(-/-)) mice. This is caused by increased Ca(2+) entry via L-type calcium channels due to faster action potential repolarization in Trpm4(-/-) ventricular myocytes [Mathar et al., 2013]. Here, we investigated the contribution of various steps of the β-adrenergic signalling cascade to the augmented positive inotropic response in the absence of TRPM4, and whether the closely related TRPM5 additively contributes to this process using TRPM4/TRPM5-double deficient (Trpm4/Trpm5((-/-)2)) mice. We performed contractility measurements on isolated papillary muscles from wild type, Trpm4(-/-) and Trpm4/Trpm5((-/-)2) mice. As shown in Trpm4(-/-) mice, Isoprenaline-induced inotropy in Trpm4/Trpm5((-/-)2) papillary muscles was significantly increased compared to wild type, whereas basal, frequency- and Ca(2+)-dependent contractility was unaltered. Equivalent to Isoprenaline, activation of adenylyl cyclase using Forskolin led to a significantly increased twitch force in Trpm4(-/-) heart preparations whereas the Isoprenaline-mediated increase in cAMP level was comparable to wild type mice. Notably, the positive inotropic response evoked by phosphodiesterase inhibition with 3-isobutyl-1-methylxanthine (IBMX) was unchanged between both genotypes. Furthermore, experiments performed with increasing concentrations of IBMX after prestimulation with Forskolin and vice versa did not provide evidence that the increased β-adrenergic positive inotropic response in TRPM4-deficient papillary muscles is due to differences in accumulation of cAMP. Compared to inhibition of phosphodiesterase, the rise of intracellular cAMP by activating adenylyl cyclase is accompanied by ATP breakdown. To test the relevance of TRPM4 during forced ATP consumption we measured contractility under ischemic conditions. Here, Trpm4(-/-) papillary muscles showed improved contractile function in comparison to wild type. Our results are consistent with the hypothesis that TRPM4 has a limiting effect on cardiac contractility specifically in ATP depleting conditions. The increased positive inotropic response in Trpm4(-/-) papillary muscles evoked by stimulation of adenylyl cyclase activity is not observed without active enhancement of ATP hydrolysis. Furthermore, the contractility of Trpm4(-/-) papillary muscles was also increased during ischemic simulation. These data underscore the potential of TRPM4 inactivation as an approach to increase inotropy in specific conditions associated with increased catecholamine levels, such as heart failure and ischemia.

摘要

TRPM4和TRPM5蛋白属于瞬时受体电位(TRP)离子通道家族,可形成Ca(2+)激活的非选择性阳离子通道。最近我们发现,在缺乏TRPM4(Trpm4(-/-))的小鼠中,异丙肾上腺素诱导的心肌收缩力显著增加。这是由于Trpm4(-/-)心室肌细胞动作电位复极化加快,导致通过L型钙通道的Ca(2+)内流增加[Mathar等人,2013年]。在此,我们研究了β-肾上腺素能信号级联反应的各个步骤对缺乏TRPM4时增强的正性肌力反应的贡献,以及密切相关的TRPM5是否使用TRPM4/TRPM5双缺陷(Trpm4/Trpm5((-/-)2))小鼠对这一过程有累加作用。我们对野生型、Trpm4(-/-)和Trpm4/Trpm5((-/-)2)小鼠的离体乳头肌进行了收缩力测量。如在Trpm4(-/-)小鼠中所示,与野生型相比,Trpm4/Trpm5((-/-)2)乳头肌中异丙肾上腺素诱导的心肌收缩力显著增加,而基础、频率和Ca(2+)依赖性收缩力未改变。与异丙肾上腺素等效,使用福斯高林激活腺苷酸环化酶导致Trpm4(-/-)心脏制剂中的抽搐力显著增加,而异丙肾上腺素介导的cAMP水平升高与野生型小鼠相当。值得注意的是,两种基因型之间用3-异丁基-1-甲基黄嘌呤(IBMX)抑制磷酸二酯酶引起的正性肌力反应没有变化。此外,在用福斯高林预刺激后用浓度递增的IBMX进行的实验以及反之亦然的实验均未提供证据表明TRPM4缺陷乳头肌中β-肾上腺素能正性肌力反应增加是由于cAMP积累的差异。与抑制磷酸二酯酶相比,通过激活腺苷酸环化酶使细胞内cAMP升高伴随着ATP的分解。为了测试TRPM4在强制ATP消耗期间的相关性,我们测量了缺血条件下的收缩力。在此,与野生型相比,Trpm4(-/-)乳头肌显示出改善的收缩功能。我们的结果与以下假设一致,即TRPM4对心脏收缩力具有限制作用,特别是在ATP消耗的条件下。在没有ATP水解的主动增强的情况下,未观察到腺苷酸环化酶活性刺激引起的Trpm4(-/-)乳头肌中增强的正性肌力反应。此外,在缺血模拟期间,Trpm4(-/-)乳头肌的收缩力也增加。这些数据强调了TRPM失活作为在与儿茶酚胺水平升高相关的特定条件下(如心力衰竭和缺血)增加心肌收缩力的一种方法的潜力。

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