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去甲肾上腺素缺乏的胚胎小鼠心脏中完整的钙信号传导。

Intact calcium signaling in adrenergic-deficient embryonic mouse hearts.

作者信息

Peoples Jessica N, Taylor David G, Katchman Alexander N, Ebert Steven N

机构信息

Burnett School of Biomedical Sciences, Division of Metabolic and Cardiovascular Sciences, College of Medicine, University of Central Florida, 6900 Lake Nona Blvd, Orlando, FL 32827, United States.

Department of Pharmacology, Georgetown University Medical Center, 3900 Reservoir Rd, NW, Washington, DC 20007, United States.

出版信息

Biochem Biophys Res Commun. 2018 Jan 22;495(4):2547-2552. doi: 10.1016/j.bbrc.2017.12.155. Epub 2017 Dec 27.

Abstract

Mouse embryos that lack the ability to produce the adrenergic hormones, norepinephrine (NE) and epinephrine (EPI), due to disruption of the dopamine beta-hydroxylase (Dbh) gene inevitably perish from heart failure during mid-gestation. Since adrenergic stimulation is well-known to enhance calcium signaling in developing as well as adult myocardium, and impairments in calcium signaling are typically associated with heart failure, we hypothesized that adrenergic-deficient embryonic hearts would display deficiencies in cardiac calcium signaling relative to adrenergic-competent controls at a developmental stage immediately preceding the onset of heart failure, which first appears beginning or shortly after mouse embryonic day 10.5 (E10.5). To test this hypothesis, we used ratiometric fluorescent calcium imaging techniques to measure cytosolic calcium transients, [Ca] in isolated E10.5 mouse hearts. Our results show that spontaneous [Ca] oscillations were intact and robustly responded to a variety of stimuli including extracellular calcium (5 mM), caffeine (5 mM), and NE (100 nM) in a manner that was indistinguishable from controls. Further, we show similar patterns of distribution (via immunofluorescent histochemical staining) and activity (via patch-clamp recording techniques) for the major voltage-gated plasma membrane calcium channel responsible for the L-type calcium current, I, in adrenergic-deficient and control embryonic cardiac cells. These results demonstrate that despite the absence of vital adrenergic hormones that consistently leads to embryonic lethality in vivo, intracellular and extracellular calcium signaling remain essentially intact and functional in embryonic mouse hearts through E10.5. These findings suggest that adrenergic stimulation is not required for the development of intracellular calcium oscillations or extracellular calcium signaling through I and that aberrant calcium signaling does not likely contribute to the onset of heart failure in this model.

摘要

由于多巴胺β-羟化酶(Dbh)基因的破坏而缺乏产生肾上腺素能激素去甲肾上腺素(NE)和肾上腺素(EPI)能力的小鼠胚胎,在妊娠中期不可避免地死于心力衰竭。由于众所周知,肾上腺素能刺激可增强发育中的心肌以及成年心肌中的钙信号传导,而钙信号传导受损通常与心力衰竭有关,我们推测,在心力衰竭开始前的一个发育阶段,相对于具有肾上腺素能功能的对照组,缺乏肾上腺素能的胚胎心脏在心脏钙信号传导方面会表现出缺陷,心力衰竭最早在小鼠胚胎第10.5天(E10.5)开始或之后不久出现。为了验证这一假设,我们使用比率荧光钙成像技术来测量分离的E10.5小鼠心脏中的细胞质钙瞬变[Ca]。我们的结果表明,自发的[Ca]振荡是完整的,并且对包括细胞外钙(5 mM)、咖啡因(5 mM)和NE(100 nM)在内的各种刺激有强烈反应,其方式与对照组无法区分。此外,我们在缺乏肾上腺素能的胚胎心脏细胞和对照胚胎心脏细胞中,展示了负责L型钙电流I的主要电压门控质膜钙通道的类似分布模式(通过免疫荧光组织化学染色)和活性模式(通过膜片钳记录技术)。这些结果表明,尽管缺乏在体内持续导致胚胎致死的重要肾上腺素能激素,但在E10.5之前的胚胎小鼠心脏中,细胞内和细胞外钙信号传导基本保持完整且功能正常。这些发现表明,细胞内钙振荡的发展或通过I的细胞外钙信号传导不需要肾上腺素能刺激,并且异常的钙信号传导不太可能导致该模型中心力衰竭的发生。

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