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Nucleolar stress induces a senescence-like phenotype in smooth muscle cells and promotes development of vascular degeneration

机译:核仁应激在平滑肌细胞中诱导衰老样表型促进血管变性的发育

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摘要

Senescence of smooth muscle cells (SMCs) has a crucial role in the pathogenesis of abdominal aortic aneurysm (AAA), a disease of vascular degeneration. Perturbation of cellular ribosomal DNA (rDNA) transcription triggers nucleolar stress response. Previously we demonstrated that induction of nucleolar stress in SMCs elicited cell cycle arrest via the ataxia-telangiectasia mutated (ATM)/ATM- and Rad3-related (ATR)-p53 axis. However, the specific roles of nucleolar stress in vascular degeneration remain unexplored. In the present study, we demonstrated for the first time that in both human and animal AAA tissues, there were non-coordinated changes in the expression of RNA polymerase I machinery components, including a downregulation of transcription initiation factor-IA (TIF-IA). Genetic deletion of TIF-IA in SMCs in mice (smTIF-IA-/-) caused spontaneous aneurysm-like lesions in the aorta. In vitro, induction of nucleolar stress triggered a non-canonical DNA damage response, leading to p53 phosphorylation and a senescence-like phenotype in SMCs. In human AAA tissues, there was increased nucleolar stress in medial cells, accompanied by localized DNA damage response within the nucleolar compartment. Our data suggest that perturbed rDNA transcription and induction of nucleolar stress contribute to the pathogenesis of AAA. Moreover, smTIF-IA-/- mice may be a novel animal model for studying spontaneous AAA-like vascular degenerations.
机译:平滑肌细胞(SMC)的衰老在腹主动脉瘤(AAA)的发病机制中具有至关重要的作用,血管变性疾病。细胞核糖体DNA(RDNA)转录的扰动触发核磁应激反应。以前,我们证明了SMC中的核仁胁迫诱导通过共济失调 - 毛细血管突变(ATM)/ ATM和RAD3相关(ATR)-P53轴引发细胞周期停滞。然而,核仁应激在血管变性中的特定作用仍未探索。在本研究中,我们首次证明了在人和动物AAA组织中,RNA聚合酶I机械组分的表达存在非协调变化,包括转录引发因子-1a的下调(TIF-IA) 。小鼠中SMCS的TIF-IA遗传缺失(SMTIF-IA - / - )在主动脉中引起自发的动脉瘤样病变。体外,核核菌应力诱导引发了非规范的DNA损伤反应,导致P53磷酸化和SMC中的衰老状表型。在人AAA组织中,内侧细胞中的核仁应激增加,核心隔室内的局部DNA损伤反应伴随着核心胁迫。我们的数据表明,扰动RDNA转录和核仁应激诱导有助于AAA的发病机制。此外,SMTIF-IA / - 小鼠可以是用于研究自发性AAA样血管退化的新型动物模型。

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