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The study of signaling pathways controlling neuronal apoptosis inhibitory protein (NAIP) expression and function.

机译:控制神经元凋亡抑制蛋白(NAIP)表达和功能的信号通路的研究。

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Deletions in the gene for Neuronal Apoptosis Inhibitory Protein ( NAIP) have been suggested to exacerbate the severity of motor neuron loss in patients with Spinal Muscular Atrophy (SMA). NAIP is the founding mammalian member of the inhibitor of apoptosis (IAP) protein family that is characterized by highly conserved amino-terminal motifs called baculovirus IAP repeats (BIR). Previous in vitro and in vivo analyses with an adenovirus expressing NAIP but lacking exons 14 and 17 of the full-length cDNA (NAIPDeltaE14/17) displayed measurable cytoprotection against apoptosic-induced cell death. In the present study, cytoprotective effects were obtained with adeno-NAIPDeltaE14/17 alone in the human neuroblastoma SH-SYSY. Pretreatment of these cells with trophic factors failed to improve the cytoprotection mediated by NAIP. Similarly, the anti-apoptosic effect of NAIP was observed in HeLa cells transiently transfected with constructs expressing full-length NAIP and NAIPDeltaE14/17. To further investigate NAIP's cellular role, human HeLa and rat PC12 stable cell lines were developed by integrating a tetracycline-dependent transcription factor construct that was able to selectively regulate a second DNA construct containing full-length NAIP. Doxorubicin, etoposide and TNFalpha were used to test the cytoprotectiveness of NAIP. Surprisingly, cells overexpressing the full-length NAIP protein did not display increased survival, as determined by a WST-1 metabolism assay, suggesting that long-term exposure to an IAP may result in cellular compensatory mechanism.; In an effort to delineate the signal transduction pathways that modulate the genes encoding marine Naip, the neuroblastoma cell line, neuro-2a was exposed to a number of signaling pathway specific inhibitors and activators. Cyclic AMP analogs, db-cAMP and 8-Br-cAMP both increased the Naip transcript, as did the plant isoflavone, genistein. Serum starvation was also found to increase Naip levels. We show that sodium butyrate (NaB), a broad-spectrum activator of many signaling pathways, increased the Naip mRNA levels of by 3-fold. By focusing on the NaB induction, it appears that Naip can be modulated by more than one signaling pathway as inhibition of JAK2 in the presence of NaB resulted in a significant and additive increase in the Naip transcript. In combination with various kinase inhibitors, the NaB-induced up-regulation was found not be dependent on the ERK, p38 or PKA pathways. A broad based kinase inhibitor, H-7 down-regulated Naip and also attenuated the NaB-induced up-regulation of Naip. Our data suggest that the Naip gene can be induced by NaB through the H-7 sensitive PKC or PKG but not PKA-pathways.; To examine whether or not the third BIR domain of NAIP (NBIR3) inhibits caspase-9, recombinant GST-NBIR3 protein was overexpressed, purified, and successfully used to demonstrate inhibition of this initator caspase. Through binding analyses a Smac-based peptide, which has been shown to be an IAP antagonist, and NBIR3 were shown to interact with a KD of 52 nM and similar to the third BIR domain of XIAP (XBIR3). Interestingly, and in contrast to XBIR3, the processed Smac protein does not appear to interact with NBIR3 as association could not be detected during a pull-down study, suggesting that other interactions between the proteins are important. In a search for unique binding partners for NBIR3, a phage display library was panned for a binding consensus sequence. Following the identification of a number of human proteins containing this sequence, TRABID a candidate protein was chosen for testing. In the TNFalpha, signaling pathway, TRAF6 can interact with both TRABID and TAK1 while NAIP can bind TAK1 but it does not appear that TRABID and NBIR3 directly interact based on pull-down studies.; Overall, through the examination of NAIP induction, signaling pathways that had not previously been associated with the up-regulation of an IAP were identified and characterized. In th
机译:已经提出神经元凋亡抑制蛋白(NAIP)基因的缺失会加剧脊髓性肌萎缩症(SMA)患者运动神经元丢失的严重性。 NAIP是凋亡抑制(IAP)蛋白家族的创始哺乳动物成员,其特征是高度保守的称为杆状病毒IAP重复序列(BIR)的氨基末端基序。以前使用表达NAIP但缺少全长cDNA外显子14和17(NAIPDeltaE14 / 17)的腺病毒进行的体外和体内分析显示出可测量的细胞凋亡抗凋亡诱导的细胞保护作用。在本研究中,单独使用腺NAIPDeltaE14 / 17在人神经母细胞瘤SH-SYSY中获得了细胞保护作用。用营养因子对这些细胞进行预处理无法改善NAIP介导的细胞保护作用。类似地,在用表达全长NAIP和NAIPDeltaE14 / 17的构建体瞬时转染的HeLa细胞中观察到NAIP的抗凋亡作用。为了进一步研究NAIP的细胞作用,通过整合四环素依赖性转录因子构建体开发了人类HeLa和大鼠PC12稳定细胞系,该构建体能够选择性地调节包含全长NAIP的第二个DNA构建体。阿霉素,依托泊苷和TNFα被用于测试NAIP的细胞保护性。出乎意料的是,通过WST-1代谢试验确定,过表达全长NAIP蛋白的细胞未显示出增加的存活,这表明长期暴露于IAP可能会导致细胞补偿机制。为了描述调节编码海洋Naip,成神经细胞瘤细胞系的基因的信号转导途径,将神经2a暴露于多种信号通路特异性抑制剂和激活剂中。环状AMP类似物db-cAMP和8-Br-cAMP都增加了Naip转录,植物异黄酮染料木黄酮也是如此。还发现血清饥饿会增加Naip水平。我们显示丁酸钠(NaB),许多信号通路的广谱激活剂,将Naip mRNA水平提高了3倍。通过集中于NaB诱导,似乎可以通过一种以上的信号传导途径调节Naip,因为在存在NaB的情况下抑制JAK2会导致Naip转录物显着增加。与各种激酶抑制剂联合使用时,发现NaB诱导的上调并不依赖于ERK,p38或PKA途径。广泛的激酶抑制剂H-7下调Naip,也减弱了NaB诱导的Naip上调。我们的数据表明,NaB基因可以通过H-7敏感的PKC或PKG而不是PKA途径被NaB诱导。为了检查NAIP的第三个BIR结构域(NBIR3)是否抑制caspase-9,重组GST-NBIR3蛋白被过表达,纯化并成功用于证明该启动子caspase被抑制。通过结合分析,一种基于Smac的肽已被证明是IAP拮抗剂,而NBIR3被证明与52nM的KD相互作用并且类似于XIAP的第三BIR结构域(XBIR3)。有趣的是,与XBIR3相反,加工过的Smac蛋白似乎没有与NBIR3相互作用,因为在下拉研究中无法检测到缔合,这表明蛋白之间的其他相互作用很重要。在寻找NBIR3的独特结合伴侣时,淘选了噬菌体展示文库以获得结合共有序列。在鉴定出许多含有该序列的人类蛋白质后,选择了一种候选蛋白质进​​行测试。在TNFalpha信号通路中,TRAF6可以与TRABID和TAK1相互作用,而NAIP可以与TAK1结合,但根据下拉研究,似乎TRABID和NBIR3没有直接相互作用。总体而言,通过检查NAIP诱导,可以鉴定和表征以前与IAP上调无关的信号传导途径。在

著录项

  • 作者

    Coffill, Cynthia Rose.;

  • 作者单位

    University of Ottawa (Canada).;

  • 授予单位 University of Ottawa (Canada).;
  • 学科 Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 181 p.
  • 总页数 181
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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