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首页> 外文期刊>The Journal of biological chemistry >Heart-specific Deletion of CnB1 Reveals Multiple Mechanisms Whereby Calcineurin Regulates Cardiac Growth and Function
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Heart-specific Deletion of CnB1 Reveals Multiple Mechanisms Whereby Calcineurin Regulates Cardiac Growth and Function

机译:CNB1的心脏特异性缺失显示出多种机制,钙调正素调节心生长和功能

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Calcineurin is a protein phosphatase that is uniquely regulated by sustained increases in intracellular Ca2+ following signal transduction events. Calcineurin controls cellular proliferation, differentiation, apoptosis, and inducible gene expression following stress and neuroendocrine stimulation. In the adult heart, calcineurin regulates hypertrophic growth of cardiomyocytes in response to pathologic insults that are associated with altered Ca2+ handling. Here we determined that calcineurin signaling is directly linked to the proper control of cardiac contractility, rhythm, and the expression of Ca2+-handling genes in the heart. Our approach involved a cardiomyocyte-specific deletion using a CnB1-LoxP-targeted allele in mice and three different cardiac-expressing Cre alleles/transgenes. Deletion of calcineurin with the Nkx2.5-Cre knock-in allele resulted in lethality at 1 day after birth due to altered right ventricular morphogenesis, reduced ventricular trabeculation, septal defects, and valvular overgrowth. Slightly later deletion of calcineurin with the α-myosin heavy chain Cre transgene resulted in lethality in early mid adulthood that was characterized by substantial reductions in cardiac contractility, severe arrhythmia, and reduced myocyte content in the heart. Young calcineurin heart-deleted mice died suddenly after pressure overload stimulation or neuroendocrine agonist infusion, and telemetric monitoring of older mice showed arrhythmia leading to sudden death. Mechanistically, loss of calcineurin reduced expression of key Ca2+-handling genes that likely lead to arrhythmia and reduced contractility. Loss of calcineurin also directly impacted cellular proliferation in the postnatal developing heart. These results reveal multiple mechanisms whereby calcineurin regulates cardiac development and myocyte contractility.
机译:钙突中是一种蛋白质磷酸酶,其通过细胞内Ca2 +以下信号转导事件的持续增加而唯一调节。钙皮蛋白在应激和神经内分泌刺激后控制细胞增殖,分化,细胞凋亡和诱导基因表达。在成人心脏中,钙突素响应于改变CA2 +处理相关的病理损伤调节心肌细胞的肥厚生长。在这里,我们确定钙素信号传导与心脏收缩性,节律和心脏CA2 + -Handling基因的表达直接相关联。我们的方法涉及使用小鼠中的CNB1-LOXP靶向等位基因和三种不同的心脏表达CRE等位基因/转基因的CNB1-LOXP靶向等位基因的特异性细胞特异性缺失。用NKX2.5-CRE敲击等位基因删除钙素蛋白导致出生后1天的杀伤率,由于右心室形态发生,减少了心室三张疗法,隔膜缺损和瓣膜过度生长。稍后用α-肌球蛋白重链CRE转基因稍后缺失钙粉,其特征在于心脏收缩性,严重心律失常和心肌细胞含量降低的特征在于成年期的致病性。幼钙素心脏删除的小鼠突然死于压力过载刺激或神经内分泌激动剂输注,并且对老鼠的遥测显示心律失常导致猝死。机械地,降钙素损失降低了可能导致心律失常和收缩性降低的关键Ca2 + -handling基因的表达。钙素损失的丧失也直接影响了产后培养的心脏细胞增殖。这些结果揭示了多种机制,即钙调素调节心脏发育和肌细胞收缩性。

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