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IGFBP-3 mediates the effect of tumor suppressor NKX3.1 on prostate cancer cell proliferation.

机译:IGFBP-3介导肿瘤抑制物NKX3.1对前列腺癌细胞增殖的影响。

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摘要

NKX3.1 codes for a prostate-specific homeodomain protein and maps to chromosome 8p21.2, a region frequently deleted in prostate cancer. Nkx3.1 has been shown to suppress cell growth in culture and to inhibit tumor growth in gene-targeted animals. Expression array analysis identified an IGF binding protein, IGFBP-3, that was substantially up regulated in response to over expression of NKX3.1. Aberrant IGF-I signaling has been reported in a variety of human cancers and elevated serum IGF-I levels are a risk factor for prostate cancer development. IGFBP-3 stimulates apoptosis, inhibits DNA synthesis and decreases in vivo tumorigenicity of prostate cancer cell lines. An NKX3.1 polymorphism exists in 11% of the population, without regard to race. Variant NKX3.1 protein coded by the polymorphic allele has reduced phosphorylation and DNA binding in vitro. The NKX3.1 polymorphism has also been shown to be a minor risk factor for prostate cancer development and disease related-mortality. In a case-control study the effect of high levels of serum IGF-I on prostate cancer risk was seen almost exclusively in men whom have at least one copy of the NKX3.1 polymorphic allele.;The data contained in this thesis shows that NKX3.1 up regulates IGFBP-3 mRNA and protein expression in prostate cancer cell lines. Stable NKX3.1 expression in PC-3 prostate cancer cells leads to the deregulation of IGF-I signaling and decreases cell proliferation. Knock down of IGFBP-3 expression in the PC-3 cells engineered to expression NKX3.1 restored IGF-I signaling and increased proliferation rate, as compared to parental PC-3 cells. The polymorphic NKX3.1 protein, NKX3.1(R52C), and the functionally equivalent mutant NKX3.1(S48A) are deficient in induction of IGFBP-3 expression. Stable expression of these variant proteins in PC-3 cells had no effect on cell proliferation and IGF-I signaling is not attenuated. We hypothesize that NKX3.1 confers local protection against IGF-I growth stimulation in prostatic epithelium by up regulating IGFBP-3. The polymorphic NKX3.1 gene has reduced capacity to induce IGFBP-3 and therefore has lost the capacity to modulate IGF-I stimulation of prostate epithelial cell proliferation, conferring increased risk of prostate cancer in men with higher levels of circulating IGF-I.
机译:NKX3.1编码一种前列腺特异的同源域蛋白,并映射到8p21.2号染色体,该区域在前列腺癌中经常被删除。 Nkx3.1已显示可抑制培养物中的细胞生长并抑制基因靶向动物中的肿瘤生长。表达阵列分析鉴定了IGF结合蛋白IGFBP-3,其响应于NKX3.1的过度表达而被上调。已经在多种人类癌症中报道了异常的IGF-1信号,并且血清IGF-1水平升高是前列腺癌发展的危险因素。 IGFBP-3刺激细胞凋亡,抑制DNA合成并降低前列腺癌细胞系的体内致瘤性。 NKX3.1多态性存在于11%的人口中,不考虑种族。由多态性等位基因编码的变体NKX3.1蛋白在体外具有降低的磷酸化和DNA结合。 NKX3.1多态性也已被证明是前列腺癌发展和疾病相关死亡率的次要危险因素。在一项病例对照研究中,几乎仅在具有至少一个NKX3.1多态性等位基因拷贝的男性中观察到高水平的血清IGF-I对前列腺癌风险的影响;本论文所包含的数据表明,NKX3 .1上调前列腺癌细胞系中的IGFBP-3 mRNA和蛋白质表达。 PC-3前列腺癌细胞中稳定的NKX3.1表达导致IGF-1信号转导失调并减少细胞增殖。与亲本PC-3细胞相比,在经过工程改造以表达NKX3.1的PC-3细胞中降低IGFBP-3的表达可恢复IGF-1信号传导并增加增殖速率。多态性NKX3.1蛋白NKX3.1(R52C)和功能等效的突变体NKX3.1(S48A)在诱导IGFBP-3表达方面存在缺陷。这些变异蛋白在PC-3细胞中的稳定表达对细胞增殖没有影响,并且IGF-I信号传导也没有减弱。我们假设NKX3.1通过上调IGFBP-3赋予前列腺上皮抗IGF-I生长刺激的局部保护。多态性NKX3.1基因诱导IGFBP-3的能力降低,因此失去了调节IGF-I刺激前列腺上皮细胞增殖的能力,从而使循环IGF-I水平较高的男性患前列腺癌的风险增加。

著录项

  • 作者

    Muhlbradt, Erin E.;

  • 作者单位

    Georgetown University.;

  • 授予单位 Georgetown University.;
  • 学科 Biology Molecular.;Health Sciences Oncology.;Biology Cell.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 154 p.
  • 总页数 154
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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