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The 26s proteasome and histone modifying enzymes regulate transcription of the class II transactivator, CIITA.

机译:26年代的蛋白酶体和组蛋白修饰酶调节II类反式激活子CIITA的转录。

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摘要

Major Histocompatibility Complex Class II (MHC-II) molecules are critical regulators of adaptive immunity that present extracellular antigens required to activate CD4+T cells. MHC-II are regulated at the level of transcription by master regulator, the Class II Transactivator (CIITA), whose association with the MHC-II promoter is necessary to initiate transcription. Recently, much research focused on novel mechanisms of transcriptional regulation of critical genes like MHC-II and CIITA; findings that the macromolecular complex of the 26S-proteasome is involved in transcription have been perhaps the most exciting as they impart novel functions to a well studied system. Proteasome is a multi-subunit complex composed of a 20S-core particle capped by a 19S-regulatory particle. The 19S contains six ATPases which are required for transcription initiation and elongation. We demonstrate that 19S ATPase-S6a inducibly associates with CIITA promoters. Decreased expression of S6a negatively impacts recruitment of the transcription factors STAT-1 and IRF-1 to the CIITA due to significant loss in histone H3 and H4 acetylation. S6a is robustly recruited to CIITA coding regions, where S6a binding coordinates with that of RNA polymerase II. RNAi mediated S6a knockdown significantly diminishes recruitment of Pol II and P-TEF-b components to CIITA coding regions, indicating S6a plays important roles in transcriptional elongation.;Our research is focused on the ways in which accessibility to and transcription of DNA is regulated. While cancers are frequently linked to dysregulated gene expression, contribution of epigenetics to cancers remains unknown. To achieve metastatic ability, tumors alter gene expression to escape host immunosurveilance. MHC-II and CIITA expression are significantly downregulated in highly metastatic MDA-MB-435 breast cancer cells. This suppression correlates with elevated levels of the silencing modification H3K27me3 at CIITA and a significant reduction in Pol II recruitment. We observe elevated binding of the histone methyltransferase to CIITApIV and demonstrate this enzyme is a master regulator of CIITA gene expression. EZH2 knockdown results in significant increases in CIITA and MHC-II transcript levels in metastatic cells. In sum, transcriptional regulation by the 19S-proteasome and histone modifying enzymes represents novel mechanisms of control of mammalian gene expression and present novel therapeutic targets for manipulating MHC expression in disease.;INDEX WORDS: Major Histocompatibility class II, Class II Transactivator, Transcription regulation, 26S proteasome, 19S ATPase, S6a, epigenetic, histone modifications, histone methyltransferase EZH2.
机译:主要的组织相容性复合物II类(MHC-II)分子是适应性免疫的关键调节剂,其提供激活CD4 + T细胞所需的细胞外抗原。 MHC-II在转录水平上受到主要调节剂II类反式激活因子(CIITA)的调节,该类激活剂与MHC-II启动子的结合对于启动转录是必需的。最近,许多研究集中在关键基因如MHC-II和CIITA的转录调控的新机制上。关于26S-蛋白酶体的大分子复合物参与转录的研究结果可能是最令人兴奋的,因为它们为经过充分研究的系统赋予了新的功能。蛋白酶体是一个多亚基复合物,由被19S调控颗粒覆盖的20S核心颗粒组成。 19S包含六个ATPase,它们是转录起始和延伸所必需的。我们证明了19S ATPase-S6a可诱导地与CIITA启动子相关联。由于组蛋白H3和H4乙酰化的显着损失,S6a表达的降低对转录因子STAT-1和IRF-1向CIITA的募集产生负面影响。 S6a被牢固地募集到CIITA编码区,其中S6a的结合与RNA聚合酶II的结合协调。 RNAi介导的S6a敲低显着减少了Pol II和P-TEF-b组分向CIITA编码区的募集,表明S6a在转录延伸中起着重要作用。;我们的研究集中在调节DNA的可及性和转录方式上。尽管癌症经常与基因表达失调有关,但表观遗传学对癌症的贡献仍然未知。为了获得转移能力,肿瘤改变基因表达以逃避宿主免疫监视。 MHC-II和CIITA表达在高度转移的MDA-MB-435乳腺癌细胞中显着下调。这种抑制与CIITA沉默修饰H3K27me3的水平升高和Pol II募集的显着减少有关。我们观察到组蛋白甲基转移酶与CIITApIV的结合增加,并证明该酶是CIITA基因表达的主要调控因子。 EZH2敲低导致转移细胞中CIITA和MHC-II转录水平显着增加。总之,由19S-蛋白酶体和组蛋白修饰酶进行的转录调控代表了控制哺乳动物基因表达的新机制,并为控制疾病中MHC表达提供了新的治疗靶标。索引词:主要组织相容性II类,II类反式激活子,转录调控,26S蛋白酶体,19S ATPase,S6a,表观遗传,组蛋白修饰,组蛋白甲基转移酶EZH2。

著录项

  • 作者

    Truax, Agnieszka D.;

  • 作者单位

    Georgia State University.;

  • 授予单位 Georgia State University.;
  • 学科 Biology Molecular.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 267 p.
  • 总页数 267
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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