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首页> 外文期刊>Human Molecular Genetics >SOX9 modulates cancer biomarker and cilia genes in pancreatic cancer
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SOX9 modulates cancer biomarker and cilia genes in pancreatic cancer

机译:SOX9在胰腺癌中调节癌症生物标志物和纤毛基因

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摘要

Pancreatic ductal adenocarcinoma (PDAC) is an aggressive form of cancer with high mortality. The cellular origins of PDAC are largely unknown; however, ductal cells, especially centroacinar cells (CACs), have several characteristics in common with PDAC, such as expression of SOX9 and components of the Notch-signaling pathway. Mutations in KRAS and alterations to Notch signaling are common in PDAC, and both these pathways regulate the transcription factor SOX9. To identify genes regulated by SOX9, we performed siRNA knockdown of SOX9 followed by RNA-seq in PANC-1s, a human PDAC cell line. We report 93 differentially expressed (DE) genes, with convergence on alterations to Notch-signaling pathways and ciliogenesis. These results point to SOX9 and Notch activity being in a positive feedback loop and SOX9 regulating cilia production in PDAC. We additionally performed ChIP-seq in PANC-1s to identify direct targets of SOX9 binding and integrated these results with our DE gene list. Nine of the top 10 downregulated genes have evidence of direct SOX9 binding at their promoter regions. One of these targets was the cancer stem cell marker EpCAM. Using whole-mount in situ hybridization to detect epcam transcript in zebrafish larvae, we demonstrated that epcam is a CAC marker and that Sox9 regulation of epcam expression is conserved in zebrafish. Additionally, we generated an epcam null mutant and observed pronounced defects in ciliogenesis during development. Our results provide a link between SOX9, EpCAM and ciliary repression that can be exploited in improving our understanding of the cellular origins and mechanisms of PDAC.
机译:胰腺导管腺癌(PDAC)是一种侵袭性癌症,死亡率很高。PDAC的细胞起源基本未知;然而,导管细胞,尤其是中央星状细胞(CAC),与PDAC有几个共同的特征,例如SOX9的表达和Notch信号通路的组成部分。KRAS突变和Notch信号改变在PDAC中很常见,这两种途径都调节转录因子SOX9。为了鉴定受SOX9调控的基因,我们在人类PDAC细胞系PANC-1s中进行了SOX9的siRNA敲除,然后进行RNA seq。我们报告了93个差异表达(DE)基因,在Notch信号通路和纤毛发生的改变上具有一致性。这些结果表明SOX9和Notch活性处于正反馈回路中,SOX9调节PDAC中纤毛的产生。此外,我们在PANC-1s中进行了芯片序列分析,以确定SOX9结合的直接靶点,并将这些结果与我们的DE基因列表相结合。前10个下调基因中有9个有证据表明SOX9在其启动子区域直接结合。其中一个目标是癌症干细胞标记物EpCAM。使用全套原位杂交检测斑马鱼幼虫中的epcam转录本,我们证明epcam是CAC标记,并且epcam表达的Sox9调节在斑马鱼中是保守的。此外,我们产生了一个epcam空突变体,并在发育过程中观察到纤毛发生中的明显缺陷。我们的研究结果提供了SOX9、EpCAM和睫状体抑制之间的联系,可用于提高我们对PDAC细胞起源和机制的理解。

著录项

  • 来源
    《Human Molecular Genetics 》 |2021年第6期| 共15页
  • 作者单位

    Johns Hopkins Univ McKusick Nathans Dept Genet Med Sch Med 733 N Broadway 470 Miller Res Bldg;

    Johns Hopkins Univ McKusick Nathans Dept Genet Med Sch Med 733 N Broadway 470 Miller Res Bldg;

    Univ Calif Irvine Dept Dev &

    Cell Biol Nat Sci 2 Irvine CA 92697 USA;

    Univ Calif Irvine Dept Dev &

    Cell Biol Nat Sci 2 Irvine CA 92697 USA;

    Johns Hopkins Univ McKusick Nathans Dept Genet Med Sch Med 733 N Broadway 470 Miller Res Bldg;

    Johns Hopkins Univ McKusick Nathans Dept Genet Med Sch Med 733 N Broadway 470 Miller Res Bldg;

    Johns Hopkins Univ McKusick Nathans Dept Genet Med Sch Med 733 N Broadway 470 Miller Res Bldg;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医学遗传学 ;
  • 关键词

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