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Studies on p53: From Discovery of Novel Functions to Improving p53-Based Therapies.

机译:p53研究:从发现新功能到改进基于p53的疗法。

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摘要

p53 is one of the most important and most frequently mutated tumor suppressors in human cancers and as such has been intensively studied for a long time. p53, which also has roles beyond cancer in normal tissues, is a major orchestrator of the cellular response to a broad array of stress types by regulating apoptosis, cell cycle arrest, senescence, DNA repair and genetic stability. These diverse actions of p53 rely on its function as a transcription factor, as well as on its transcription independent cytosolic functions. An example of transcription independent p53 function is the direct mitochondrial p53 pathway where p53 regulates the intrinsic apoptotic machinery by several direct interactions with members of the Bcl-2 family. Today, an exciting venue in p53 research is the development of p53-reactivating compounds such as Nutlin for the treatment of human cancers that retained wtp53. Although Nutlin-type compounds hold great promise, improvements are still necessary before they can be established in the clinic.;During my dissertation research I conducted three studies related to p53. The first shows a critical role of the direct mitochondrial p53 pathway during Nutlin-induced apoptosis in wild-type p53 retaining cancer cells, therefore establishing this pathway as a therapeutically relevant mechanism in p53-based therapies. My second project identifies the Hsp90 inhibitor 17AAG as a potent synthetic lethal synergistic partner of Nutlin for treatment of difficult-to kill solid human tumors. My third project describes a completely novel and exiting function of mitochondrial p53 in inducing tissue necrosis during oxidative stress. Upon such stress, p53 translocates to the mitochondrial matrix and regulates (induces opening of) the mitochondrial Permeability Transition Pore by direct interaction with the pore's essential regulatory protein Cyclophilin D. This unsuspected new function of p53 impacts brain ischemia-reperfusion injury during stroke in vivo.
机译:p53是人类癌症中最重要且最频繁突变的肿瘤抑制因子之一,因此已经进行了长时间的深入研究。 p53在正常组织中还具有超越癌症的作用,它是通过调节细胞凋亡,细胞周期停滞,衰老,DNA修复和遗传稳定性来应对多种应激类型的细胞反应的主要协调者。 p53的这些不同作用取决于其作为转录因子的功能,以及其与转录无关的胞质功能。转录独立的p53功能的一个例子是直接线粒体p53途径,其中p53通过与Bcl-2家族成员的几次直接相互作用来调节内在的凋亡机制。如今,p53研究的一个令人兴奋的领域是开发p53活化化合物,例如Nutlin,用于治疗保留wtp53的人类癌症。尽管Nutlin型化合物前景广阔,但仍需要改进才能在临床上确立。;在我的论文研究期间,我进行了三项与p53相关的研究。第一个显示线粒体p53直接途径在野生型p53保留癌细胞中Nutlin诱导的凋亡过程中的关键作用,因此将该途径确立为基于p53的疗法中与治疗相关的机制。我的第二个项目将Hsp90抑制剂17AAG鉴定为Nutlin的有效合成致死协同伴侣,用于治疗难以杀死的实体人类肿瘤。我的第三个项目描述了线粒体p53在氧化应激过程中诱导组织坏死的全新功能。在这种压力下,p53通过与孔中必需的调节蛋白Cyclophilin D的直接相互作用,转移到线粒体基质并调节(诱导开放)线粒体通透性转变孔。p53的这种新功能在体内中风期间会影响脑缺血再灌注损伤。 。

著录项

  • 作者

    Vaseva, Angelina Vasileva.;

  • 作者单位

    State University of New York at Stony Brook.;

  • 授予单位 State University of New York at Stony Brook.;
  • 学科 Biology Cell.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 140 p.
  • 总页数 140
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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