首页> 外文期刊>Arteriosclerosis, thrombosis, and vascular biology >PIM1 (Moloney Murine Leukemia Provirus Integration Site) Inhibition Decreases the Nonhomologous End-Joining DNA Damage Repair Signaling Pathway in Pulmonary Hypertension
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PIM1 (Moloney Murine Leukemia Provirus Integration Site) Inhibition Decreases the Nonhomologous End-Joining DNA Damage Repair Signaling Pathway in Pulmonary Hypertension

机译:PIM1(Moloney鼠白血病Provirus Integration Site)抑制降低了肺动脉高压下的非莫源性终端接合DNA损伤修复信号通路

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Supplemental Digital Content is available in the text. Objective: Pulmonary arterial hypertension (PAH) is a fatal disease characterized by the narrowing of pulmonary arteries (PAs). It is now established that this phenotype is associated with enhanced PA smooth muscle cells (PASMCs) proliferation and suppressed apoptosis. This phenotype is sustained in part by the activation of several DNA repair pathways allowing PASMCs to survive despite the unfavorable environmental conditions. PIM1 (Moloney murine leukemia provirus integration site) is an oncoprotein upregulated in PAH and involved in many prosurvival pathways, including DNA repair. The objective of this study was to demonstrate the implication of PIM1 in the DNA damage response and the beneficial effect of its inhibition by pharmacological inhibitors in human PAH-PASMCs and in rat PAH models. Approach and Results: We found in vitro that PIM1 inhibition by either SGI-1776, TP-3654, siRNA (silencer RNA) decreased the phosphorylation of its newly identified direct target KU70 (lupus Ku autoantigen protein p70) resulting in the inhibition of double-strand break repair (Comet Assay) by the nonhomologous end-joining as well as reduction of PAH-PASMCs proliferation (Ki67-positive cells) and resistance to apoptosis (Annexin V positive cells) of PAH-PASMCs. In vivo, SGI-1776 and TP-3654 given 3× a week, improved significantly pulmonary hemodynamics (right heart catheterization) and vascular remodeling (Elastica van Gieson) in monocrotaline and Fawn-Hooded rat models of PAH. Conclusions: We demonstrated that PIM1 phosphorylates KU70 and initiates DNA repair signaling in PAH-PASMCs and that PIM1 inhibitors represent a therapeutic option for patients with PAH.
机译:文本中提供了补充数字内容。目的:肺动脉高压(PAH)是一种致命的疾病,其特征在于肺动脉(PAS)。现在确定这种表型与增强的PA平滑肌细胞(PASMCS)增殖和抑制细胞凋亡相关。这种表型是部分地通过激活几种DNA修复途径,尽管存在不利的环境条件,允许PASMC活化。 PIM1(Moloney鼠白血病Provirus Integation Site)是癌蛋白在PAH中上调,涉及许多冒失途径,包括DNA修复。本研究的目的是证明PIM1在DNA损伤反应中的含义和其抑制人PAH-PASMCs和大鼠PAH模型中的药物抑制剂的有益效果。方法和结果:我们在体外发现PIM1抑制通过SGI-1776,TP-3654,siRNA(消解器RNA)降低了其新发现的直接目标KU70(Lupus Ku Autoistigen蛋白P70)的磷酸化,导致了双重的抑制通过非莫源性终端连接以及降低PAH-PASMCS增殖(Ki67阳性细胞)和对凋亡(吞并阳性阳性细胞)的凋亡(膜蛋白v阳性细胞)的凋亡(膜蛋白v阳性细胞)的血管脱落修复(Comet测定)。在体内,SGI-1776和TP-3654给予3×每周,改善了肺部血流动力学(右心导管)和血管重塑(Elastica Van Gieson)在蒙公民术和牵引式大鼠Pah的血管改造(Elastica Van Gieson)。结论:我们证明PIM1磷酸化KU70并在PAH-PASMC中启动DNA修复信号传导,PIM1抑制剂代表PAH患者的治疗选择。

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    From the Department of Medicine Pulmonary Hypertension and Vascular Biology Research Group Heart;

    From the Department of Medicine Pulmonary Hypertension and Vascular Biology Research Group Heart;

    From the Department of Medicine Pulmonary Hypertension and Vascular Biology Research Group Heart;

    From the Department of Medicine Pulmonary Hypertension and Vascular Biology Research Group Heart;

    From the Department of Medicine Pulmonary Hypertension and Vascular Biology Research Group Heart;

    From the Department of Medicine Pulmonary Hypertension and Vascular Biology Research Group Heart;

    From the Department of Medicine Pulmonary Hypertension and Vascular Biology Research Group Heart;

    From the Department of Medicine Pulmonary Hypertension and Vascular Biology Research Group Heart;

    Department of Fundamental Sciences Université du Québec à Chicoutimi;

    From the Department of Medicine Pulmonary Hypertension and Vascular Biology Research Group Heart;

    From the Department of Medicine Pulmonary Hypertension and Vascular Biology Research Group Heart;

    From the Department of Medicine Pulmonary Hypertension and Vascular Biology Research Group Heart;

    From the Department of Medicine Pulmonary Hypertension and Vascular Biology Research Group Heart;

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  • 正文语种 eng
  • 中图分类 心脏、血管(循环系)疾病;
  • 关键词

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