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Effects of TGFβ1 on gene expression in the HP75 human pituitary tumor cell line identified by gene expression profiling

机译:TGFβ1对通过基因表达谱鉴定的人垂体瘤HP75细胞中基因表达的影响

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摘要

The pathogenesis of pituitary adenomas and many of the genes influencing growth of these tumors are unknown. TGFβ is known to inhibit proliferation of cultured anterior pituitary cells and anterior pituitary tumors, but the signal transduction pathways involved in the inhibition of growth are unclear. We treated the human HP75 pituitary cell line with 10?9 M TGFβ1 for 4, 24, and 96 h and performed global gene expression profiling by Affymetrix GeneChip microarray analysis. Quantitative PCR validation of specific genes involved in the TGFβ1-induced regulation of pituitary cell growth was also done. Of the 15,000 genes queried, there were 37 genes up-regulated and 48 genes down-regulated twofold or more after 4 h of TGFβ1 treatment. There were 121 genes up-regulated and 109 genes down-regulated twofold or more after 24 h of TGFβ1 treatment and 112 genes up-regulated and 43 genes down-regulated twofold or more after 96 h of TGFβ1 treatment. Galectin-3 (Gal-3) protein was decreased by TGFβ1 treatment and several genes which interacted with Gal-3 including RUNX1 and WNT5B were up-regulated after TGFβ1 treatment. SOX4 was also up-regulated by TGFβ1 treatment. SMAD3, which is directly involved in the TGFβ signal transduction pathway, was down-regulated by TGFβ1 treatment. These findings highlight the diverse gene networks and pathways through which TGFβ operates in its effects on pituitary tumor cells.
机译:垂体腺瘤的发病机理和许多影响这些肿瘤生长的基因尚不清楚。已知TGFβ抑制培养的垂体前叶细胞和垂体前叶肿瘤的增殖,但是尚不清楚抑制生长的信号转导途径。我们分别用10?9 MTGFβ1处理人的HP75垂体细胞系4、24和96 h,并通过Affymetrix GeneChip基因芯片分析进行整体基因表达谱分析。还对参与TGFβ1诱导的垂体细胞生长调节的特定基因进行了定量PCR验证。在TGFβ1处理4小时后,在查询的15,000个基因中,有37个基因上调,并且有48个基因下调了两倍或更多倍。 TGFβ1处理24小时后,有121个基因被上调,而109个基因被下调了两倍或以上;TGFβ1处理96小时后,上调了112个基因,而43个基因被下调了两倍以上。 TGFβ1处理后,Galectin-3(Gal-3)蛋白降低,TGFβ1处理后,与Gal-3相互作用的几个基因包括RUNX1和WNT5B被上调。 TGFβ1处理也使SOX4上调。直接参与TGFβ信号转导途径的SMAD3被TGFβ1处理下调。这些发现强调了TGFβ作用于垂体肿瘤细胞的各种基因网络和途径。

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  • 来源
    《Endocrine》 |2008年第1期|62-76|共15页
  • 作者单位

    Department of Laboratory Medicine and Pathology Mayo Clinic 200 First Street SW Rochester MN 55905 USA;

    Department of Bioinformatics Mayo Clinic College of Medicine Rochester MN USA;

    Department of Laboratory Medicine and Pathology Mayo Clinic 200 First Street SW Rochester MN 55905 USA;

    Department of Laboratory Medicine and Pathology Mayo Clinic 200 First Street SW Rochester MN 55905 USA;

    Department of Laboratory Medicine and Pathology Mayo Clinic 200 First Street SW Rochester MN 55905 USA;

    Department of Laboratory Medicine and Pathology Mayo Clinic 200 First Street SW Rochester MN 55905 USA;

    Department of Laboratory Medicine and Pathology Mayo Clinic 200 First Street SW Rochester MN 55905 USA;

    Department of Laboratory Medicine and Pathology Mayo Clinic 200 First Street SW Rochester MN 55905 USA;

    Department of Anatomy and AP Faculty of Veterinary Sciences University of Santiago de Compostela Lugo Spain;

    St. Michael’s Hospital University of Toronto Toronto ON Canada;

    Department of Laboratory Medicine and Pathology Mayo Clinic 200 First Street SW Rochester MN 55905 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Pituitary tumor cells; TGFβ1; RNA profiling; HP75 cells;

    机译:垂体肿瘤细胞;TGFβ1;RNA谱;HP75细胞;

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