首页> 外文期刊>Journal of pineal research >Melatonin regulates PARP PARP 1 to control the senescence‐associated secretory phenotype ( SASP SASP ) in human fetal lung fibroblast cells
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Melatonin regulates PARP PARP 1 to control the senescence‐associated secretory phenotype ( SASP SASP ) in human fetal lung fibroblast cells

机译:褪黑激素调节PARP PARP 1以控制人胎肺成纤维细胞中的衰老相关的分泌表型(SASP SASP)

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摘要

Abstract Cellular senescence is an important tumor‐suppressive mechanism. However, acquisition of a senescence‐associated secretory phenotype ( SASP ) in senescent cells has deleterious effects on the tissue microenvironment and, paradoxically, promotes tumor progression. In a drug screen, we identified melatonin as a novel SASP suppressor in human cells. Strikingly, melatonin blunts global SASP gene expression upon oncogene‐induced senescence ( OIS ). Moreover, poly( ADP ‐ribose) polymerase‐1 ( PARP ‐1), a sensor of DNA damage, was identified as a new melatonin‐dependent regulator of SASP gene induction upon OIS . Here, we report two different but potentially coherent epigenetic strategies for melatonin regulation of SASP . The interaction between the telomeric repeat‐containing RNA ( TERRA ) and PARP ‐1 stimulates the SASP , which was attenuated by 67.9% (illustrated by the case of IL 8) by treatment with melatonin. Through binding to macroH2A1.1, PARP ‐1 recruits CREB ‐binding protein ( CBP ) to mediate acetylation of H2 BK 120, which positively regulates the expression of target SASP genes, and this process is interrupted by melatonin. Consequently, the findings provide novel insight into melatonin's epigenetic role via modulating PARP ‐1 in suppression of SASP gene expression in OIS ‐induced senescent cells. Our studies identify melatonin as a novel anti‐ SASP molecule, define PARP ‐1 as a new target by which melatonin regulates SASP , and establish a new epigenetic paradigm for a pharmacological mechanism by which melatonin interrupts PARP ‐1 interaction with the telomeric long noncoding RNA (lnc RNA ) or chromatin.
机译:摘要细胞衰老是一种重要的肿瘤抑制机制。然而,在衰老细胞中获取衰老相关的分泌表型(SASP)对组织微环境具有有害影响,并且矛盾,促进肿瘤进展。在药物筛选中,我们将褪黑激素鉴定为人体细胞中的新型SaSP抑制剂。尖锐地,褪黑激素在癌基因诱导的衰老(OIS)时钝化全球SASP基因表达。此外,聚(ADP-ribose)聚合酶-1(PARP -1),DNA损伤传感器,被鉴定为OIS上的SASP基因诱导的新褪黑激素依赖性调节剂。在这里,我们报告了两种不同但潜在的连贯的SAP褪黑素调节的表观遗传策略。通过用褪黑素治疗,通过褪黑素治疗致敏感的含量的RNA(Terra)和PARP-1之间的相互作用刺激SAP,其衰减67.9​​%(通过IL 8的情况说明)。通过与MacroH2a1.1的结合,PARP -1促进CREB ​​ - 粘合蛋白(CBP)介导H2 BK 120的乙酰化,其阳性调节靶SASP基因的表达,并且该方法被褪黑激素中断。因此,调查结果通过调节PARP -1在抑制炎趋势细胞中的SASP基因表达中来提供对褪黑激素的表观遗传作用的新颖洞察。我们的研究将褪黑激素鉴定为新型抗SASP分子,将PARP -1定义为褪黑激素调节SASP的新靶,并建立一种新的表观遗传范式,用于褪黑素中断PARP -1与端粒长度非数性RNA的PARP -1相互作用的药理机制(LNC RNA)或染色质。

著录项

  • 来源
    《Journal of pineal research》 |2017年第1期|共1页
  • 作者单位

    Department of OncologyThird Military Medical UniversityChongqing China;

    Department of OncologyThird Military Medical UniversityChongqing China;

    Department of OncologyThird Military Medical UniversityChongqing China;

    Department of GastroenterologyThird Military Medical UniversityChongqing China;

    State Key Laboratory of Biotherapy and Cancer CenterSichuan UniversityChengdu China;

    Department of OncologyThird Military Medical UniversityChongqing China;

    Department of OncologyThird Military Medical UniversityChongqing China;

    Department of OncologyThird Military Medical UniversityChongqing China;

    Department of OncologyThird Military Medical UniversityChongqing China;

    Department of OncologyThird Military Medical UniversityChongqing China;

    Department of OncologyThird Military Medical UniversityChongqing China;

    Department of OncologyThird Military Medical UniversityChongqing China;

    Department of OncologyThird Military Medical UniversityChongqing China;

    Department of OncologyThird Military Medical UniversityChongqing China;

    Department of OncologyThird Military Medical UniversityChongqing China;

    Department of OncologyThird Military Medical UniversityChongqing China;

    Department of OncologyThird Military Medical UniversityChongqing China;

    Department of Biochemistry and Molecular BiologyThe Third Military Medical UniversityChongqing China;

    Key Laboratory of Cardiovascular &

    Cerebrovascular MedicineNanjing Medical UniversityNanjing China;

    Department of OncologyThird Military Medical UniversityChongqing China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 内分泌腺疾病及代谢病;
  • 关键词

    cellular senescence; histone acetylation; melatonin; PARP 1; SASP; TERRA;

    机译:细胞衰老;组蛋白乙酰化;褪黑素;PARP 1;SASP;TERRA;
  • 入库时间 2022-08-20 09:55:52

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