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The mitochondrial calcium uniporter in sinus node physiology and disease

The mitochondrial calcium uniporter in sinus node physiology and disease
窦房结生理和疾病中的线粒体钙单向转运蛋白
批准号:
8455270
负责人:
Tyler Paul Rasmussen
金额:
$2.83万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2013
资助国家:
美国
项目状态:
已结题
起止时间:
2013-02-01 至 2018-07-31

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中文摘要
翻译
描述(由申请人提供):窦房结(SAN)细胞是位于右心房外侧的心脏起搏细胞,需要适当的Ca 2+处理以产生节律性心率(HR)。线粒体钙单向转运蛋白(MCU)是新近发现的一种40 kDa的蛋白质,负责钙离子内流进入线粒体。我发现,用拮抗剂药物RU 360抑制MCU,可以阻断孤立的SAN细胞对异丙肾上腺素(一种肾上腺素能受体激动剂)的反应,使其搏动频率增加。当在移液管溶液中灌注ATP时,该结果被逆转。基于这些数据,我假设线粒体Ca 2+是SAN细胞响应异丙肾上腺素所需的信号,并且抑制MCU会阻止线粒体将能量供应与需求相匹配。窦房结功能障碍(SND)是一种临床病症,其特征是主要心脏起搏器失调、HR减慢以及心律失常和猝死风险增加。目前,SND的唯一治疗方法是手术植入永久性起搏器,每年花费20亿美元,并与许多疾病相关。我们的实验室最近报道了一种新的机制,其中血管紧张素II(Ang II)输注小鼠由于SAN细胞死亡而发生SND。线粒体Ca 2+是调节代谢过程所必需的信号,但过多的线粒体Ca 2+负荷可导致线粒体诱导的细胞死亡。在这里,我将测试新的概念,即MCU是线粒体Ca 2+进入的看门人,但有可能允许线粒体Ca 2+过载,细胞死亡和SND。我开发了具有遗传MCU抑制的小鼠,通过心肌限定的显性阴性MCU的转基因表达。我将使用这些新小鼠来测试MCU在SAN生理学和Ang-II诱导的SND中的潜在作用。据我所知,这将是心脏组织中MCU的首次体内研究。本工作的目的是确定线粒体Ca 2+如何有助于心脏起搏,并探讨MCU抑制在SND的Ang II输注模型中的作用。我的研究将使用两个特定目标来测试MCU在SAN生理学和疾病中的假设作用:目标1:确定通过MCU抑制Ca 2+内流的生理作用。目的2:确定MCU抑制是否影响生理HR反应和/或防止体内SAN细胞死亡和SND。
英文摘要
DESCRIPTION (provided by applicant): Sinoatrial node (SAN) cells are cardiac pacemaker cells located in the lateral right atrium that require proper Ca2+ handling to produce a rhythmic heart rate (HR). It is well accepted that SAN cells rely on slow depolarizing If channels, sarcoplasmic Ca2+ release and modulation of intracellular Ca2+ by membrane ion channels to modulate HR. The mitochondrial calcium uniporter (MCU) is a newly identified 40 kDa protein that is responsible for Ca2+ influx into mitochondria. I found that inhibiting MCU with the antagonist drug, RU360, blocks isolated SAN cells from increasing beating frequency in response to isoproterenol, a ¿-adrenergic receptor agonist. This outcome was reversed when ATP was perfused in the pipette solution. Based on these data, I hypothesize that mitochondrial Ca2+ is a required signal for SAN cells to respond to isoproterenol and that inhibiting MCU prevents mitochondria from matching energy supply with demand. Sinus node dysfunction (SND) is a clinical condition marked by dysregulation of the primary cardiac pacemaker, slowing of the HR and increased risk of arrhythmias and sudden death. At present the only treatment for SND is surgical implantation of a permanent pacemaker, which costs 2 billion dollars annually and is associated with numerous morbidities. Our lab recently reported a novel mechanism in which angiotensin II (Ang II) infused mice developed SND due to SAN cell death. Mitochondrial Ca2+ is a required signal for regulation of metabolic processes, but excessive mitochondrial Ca2+ load can lead to mitochondrial induced cell death. Here I will test the novel concept that the MCU is a gatekeeper for mitochondrial Ca2+ entry but with the potential to permit mitochondrial Ca2+ overload, cell death and SND. I developed mice with genetic MCU inhibition, by myocardial-delimited transgenic expression of a dominant-negative MCU. I will use these new mice to test the potential role of MCU in SAN physiology and in Ang-II induced SND. To my knowledge, this will be the first in vivo study of the MCU in cardiac tissue. The goal of thi work is to determine how mitochondrial Ca2+ contributes to cardiac pacing and explore the effect of MCU inhibition in an Ang II infusion model of SND. My studies will test the hypothesized role of the MCU in SAN physiology and disease using two Specific Aims: Aim 1: Determine the physiologic effects of inhibiting Ca2+ influx through the MCU. Aim 2: Determine whether MCU inhibition affects physiological HR responses and/or protects against SAN cell death and SND in vivo.
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The mitochondrial calcium uniporter in sinus node physiology and disease
  • 批准号:
    8635217
  • 项目类别:
  • 资助金额:
    $2.89万
  • 财政年份:
    2013
  • 负责人:
    Tyler Paul Rasmussen
  • 依托单位:
The mitochondrial calcium uniporter in sinus node physiology and disease
  • 批准号:
    8996592
  • 项目类别:
  • 资助金额:
    $0.74万
  • 财政年份:
    2013
  • 负责人:
    Tyler Paul Rasmussen
  • 依托单位:
海外基金