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Adaptive responses of oncogenic cells to dysfunctional telomeres.

机译:致癌细胞对功能失调的端粒的适应性反应。

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摘要

Telomerase activation is a common feature of most advanced human cancers and is postulated to restore genomic stability to a level permissive for cell viability and tumor progression. The RB/p16INK4a and p53/p19ARF tumor suppressor pathways are key pathways in governing cellular responses to telomere dysfunction. The Ink4a/Arf mutant background was used to study the adaptive responses of oncogenic cells to telomere dysfunction and to provide direct genetic evidence of a role for both p16INK4a and p19ARF in modulating the cellular and tissue phenotypes associated with telomere dysfunction. Transformed late generation mTerc-/-Ink4a/Arf-/- mouse embryonic fibroblast (MEFs) were generated to explore how telomere-based crisis relates to the evolution of cancer genomes and tumor biology. Extensive passage in culture led to genomic instability and complex karyotypes. Despite a high degree of genomic instability, these MEFs retained the capacity to form subcutaneous tumors in immunocompromised mice. However, telomere dysfunction completely abrogated lung metastases following tail-vein injection, whereas mTerc reconstitution alone conferred robust metastatic activity. Serial subcutaneous tumor formation of these late generation mTerc-/-Ink4a/Arf-/- MEFs activated telomerase-independent alternative lengthening of telomeres (ALT). Significantly, ALT did not rescue metastases, indicating in vivo functional differences between ALT and telomerase activation. In contrast to the rescue associated with p53 deficiency, Ink4a/Arf deficiency did not attenuate the degenerative phenotypes elicited by telomere dysfunction in the late generation mTerc-/- mice. Furthermore, in contrast to accelerated cancer onset and increased epithelial cancers in the p53 mutant background, late generation mTerc-/-Ink4a/Arf-/- mutant mice experienced a delayed tumor onset and maintained the stereotypical lymphoma and sarcoma spectrum. Late generation mTerc+/+Ink4a/Arf-/- tissues showed activated p53 and derivative tumor cell lines sustained frequent loss of p53 function, whereas mTerc-/-Ink4a/Arf-/- tumor cell lines retained p53. In addition, the late generation mTerc-/-Ink4a/Arf-/- tumors activated ALT, underscoring the need for adaptation despite the absence of p16 INK4a and p19ARF. These observations highlight the importance of genetic context in dictating whether telomere dysfunction promotes or suppresses age-related degenerative conditions, the rate of initiation and type of spontaneous cancers. Lastly preliminary genomic analysis of the MEFs and tumors were performed to identify pathways pertinent to the adaptation to telomere dysfunction.
机译:端粒酶激活是大多数晚期人类癌症的普遍特征,并被认为可以将基因组稳定性恢复到细胞活力和肿瘤进展所允许的水平。 RB / p16INK4a和p53 / p19ARF肿瘤抑制途径是控制细胞对端粒功能障碍反应的关键途径。 Ink4a / Arf突变体背景用于研究致癌细胞对端粒功能障碍的适应性反应,并提供直接的遗传学证据,证明p16INK4a和p19ARF在调节与端粒功能障碍相关的细胞和组织表型中的作用。生成了转换后的新一代mTerc-/-Ink4a / Arf-/-小鼠胚胎成纤维细胞(MEF),以探索基于端粒的危机如何与癌症基因组和肿瘤生物学的进化相关。文化中的大量传代导致基因组不稳定和复杂的核型。尽管基因组高度不稳定,但这些MEF仍保留了免疫受损小鼠中形成皮下肿瘤的能力。然而,端静脉功能障碍完全消除了尾静脉注射后的肺转移,而单独的mTerc重组赋予了强大的转移活性。这些晚期mTerc-/-Ink4a / Arf-/-MEF的连续皮下肿瘤形成激活了端粒酶非依赖性端粒的替代性延长(ALT)。明显地,ALT不能挽救转移,表明ALT和端粒酶激活之间的体内功能差异。与p53缺乏症相关的抢救相反,Ink4a / Arf缺乏症不会减弱晚期mTerc-/-小鼠端粒功能障碍引起的变性表型。此外,与在p53突变体背景下加速的癌症发作和上皮癌增加相反,晚期mTerc-/-Ink4a / Arf-/-突变小鼠经历了延迟的肿瘤发作并保持了定型淋巴瘤和肉瘤谱。晚期mTerc + / + Ink4a / Arf-/-组织显示激活的p53和衍生肿瘤细胞系持续频繁丧失p53功能,而mTerc-/-Ink4a / Arf-/-肿瘤细胞系保留p53。此外,晚期mTerc-/-Ink4a / Arf-/-肿瘤激活了ALT,从而强调了尽管缺乏p16 INK4a和p19ARF也需要进行适应。这些观察结果突出了遗传背景在决定端粒功能障碍是否促进或抑制与年龄有关的退化性疾病,起始率和自发性癌症类型方面的重要性。最后,对MEF和肿瘤进行了初步的基因组分析,以鉴定与适应端粒功能障碍有关的途径。

著录项

  • 作者

    Khoo, Christine Mei Lian.;

  • 作者单位

    Harvard University.;

  • 授予单位 Harvard University.;
  • 学科 Biology Genetics.; Health Sciences Oncology.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 141 p.
  • 总页数 141
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 遗传学;肿瘤学;
  • 关键词

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