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首页> 外文期刊>The Journal of biological chemistry >Cardiac Lineage Protein-1 (CLP-1) Regulates Cardiac Remodeling via Transcriptional Modulation of Diverse Hypertrophic and Fibrotic Responses and Angiotensin II-transforming Growth Factor β (TGF-β1) Signaling Axis
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Cardiac Lineage Protein-1 (CLP-1) Regulates Cardiac Remodeling via Transcriptional Modulation of Diverse Hypertrophic and Fibrotic Responses and Angiotensin II-transforming Growth Factor β (TGF-β1) Signaling Axis

机译:心脏谱系蛋白-1(CLP-1)通过转录调节多样化肥厚和纤维化反应和血管紧张素II转化生长因子β(TGF-β1)信号轴的转录调节,调节心脏重塑

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It is well known that the renin-angiotensin system contributes to left ventricular hypertrophy and fibrosis, a major determinant of myocardial stiffness. TGF-β1 and renin-angiotensin system signaling alters the fibroblast phenotype by promoting its differentiation into morphologically distinct pathological myofibroblasts, which potentiates collagen synthesis and fibrosis and causes enhanced extracellular matrix deposition. However, the atrial natriuretic peptide, which is induced during left ventricular hypertrophy, plays an anti-fibrogenic and anti-hypertrophic role by blocking, among others, the TGF-β-induced nuclear localization of Smads. It is not clear how the hypertrophic and fibrotic responses are transcriptionally regulated. CLP-1, the mouse homolog of human hexamethylene bis-acetamide inducible-1 (HEXIM-1), regulates the pTEFb activity via direct association with pTEFb causing inhibition of the Cdk9-mediated serine 2 phosphorylation in the carboxyl-terminal domain of RNA polymerase II. It was recently reported that the serine kinase activity of Cdk9 not only targets RNA polymerase II but also the conserved serine residues of the polylinker region in Smad3, suggesting that CLP-1-mediated changes in pTEFb activity may trigger Cdk9-dependent Smad3 signaling that can modulate collagen expression and fibrosis. In this study, we evaluated the role of CLP-1 in vivo in induction of left ventricular hypertrophy in angiotensinogen-overexpressing transgenic mice harboring CLP-1 heterozygosity. We observed that introduction of CLP-1 haplodeficiency in the transgenic α-myosin heavy chain-angiotensinogen mice causes prominent changes in hypertrophic and fibrotic responses accompanied by augmentation of Smad3/Stat3 signaling. Together, our findings underscore the critical role of CLP-1 in remodeling of the genetic response during hypertrophy and fibrosis.
机译:众所周知,肾素 - 血管紧张素系统有助于左心室肥大和纤维化,是心肌僵硬的主要决定因素。 TGF-β1和肾素 - 血管紧张素系统信号传导通过促进其分化在形态学上不同的病理学肌纤维细胞中改变成纤维细胞表型,这引起了胶原蛋白合成和纤维化,并引起增强的细胞外基质沉积。然而,在左心室肥厚期间诱导的心房钠尿肽通过阻断TGF-β-诱导的Smads的核定位发挥抗纤维型和抗肥厚性作用。目前尚不清楚如何调节肥厚性和纤维化反应。 CLP-1,人六亚甲基双 - 乙酰胺的小鼠同源物诱导-1(霍克马以1),通过与PTEFB直接结合调节PTEFB活性,导致RNA聚合酶的羧基 - 末端结构酶中的CDK9介导的丝氨酸2磷酸化抑制II。最近据报道,CDK9的丝氨酸激酶活性不仅靶向RNA聚合酶II,而且还靶向SMAD3中的Polylinker区域的保守丝氨酸残基,表明CLP-1介导的PTEFB活性的变化可以触发可以的CDK9依赖的SMAD3信号传导调节胶原蛋白的表达和纤维化。在这项研究中,我们评估了CLP-1在体内在血管紧张素引发转基因小鼠患有CLP-1杂合子的转基因小鼠中诱导左心室肥厚中的作用。我们观察到,在转基因α-myosin重链 - 血管紧张素病小鼠中引入CLP-1单层缺陷导致伴有SMAD3 / Stat3信号传导的增强效果和纤维化反应的突出变化。在一起,我们的研究结果强调了CLP-1在肥大和纤维化期间重塑遗传反应的关键作用。

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