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microRNA 17/20 inhibits cellular invasion and tumor metastasis in breast cancer by heterotypic signaling

机译:microRNA 17/20通过异型信号转导抑制乳腺癌的细胞侵袭和肿瘤转移

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摘要

microRNAs are thought to regulate tumor progression and invasion via direct interaction with target genes within cells. Here the microRNA17/20 cluster is shown to govern cellular migration and invasion of nearby cells via heterotypic secreted signals, micro-RNA17/20 abundance is reduced in highly invasive breast cancer cell lines and node-positive breast cancer specimens. Cell-conditioned medium from microRNA17/20-overexpressing noninvasive breast cancer cell MCF7 was sufficient to inhibit MDA-MB-231 cell migration and invasion through inhibiting secretion of a subset of cyto-kines, and suppressing plasminogen activation via inhibition of the secreted plasminogen activators (cytokeratin 8 and α-enolase). microRNA17/20 directly repressed IL-8 by targeting its 3' UTR, and inhibited cytokeratin 8 via the cell cycle control protein cyclin D1. At variance with prior studies, these results demonstrated a unique mechanism of how the altered microRNA17/20 expression regulates cellular secretion and tumor microenvironment to control migration and invasion of neighboring cells in breast cancer. These findings not only reveal an antiinvasive function of miR-17/20 in breast cancer, but also identify a heterotypic secreted signal that mediates the microRNA regulation of tumor metastasis.
机译:人们认为microRNA通过与细胞内靶基因的直接相互作用来调节肿瘤的进展和侵袭。在这里,microRNA17 / 20簇显示出通过异型分泌信号控制细胞迁移和附近细胞的侵袭,在高侵袭性乳腺癌细胞系和淋巴结阳性的乳腺癌标本中,microRNA17 / 20的丰度降低了。来自过表达microRNA17 / 20的非侵袭性乳腺癌细胞MCF7的细胞条件培养基足以抑制MDA-MB-231细胞迁移和侵袭,方法是抑制一部分细胞因子的分泌,并通过抑制分泌的纤溶酶原激活物来抑制纤溶酶原激活。 (细胞角蛋白8和α-烯醇化酶)。 microRNA17 / 20通过靶向其3'UTR直接抑制IL-8,并通过细胞周期控制蛋白cyclin D1抑制细胞角蛋白8。与先前的研究不同,这些结果证明了改变的microRNA17 / 20表达如何调节细胞分泌和肿瘤微环境,以控制乳腺癌中邻近细胞的迁移和侵袭的独特机制。这些发现不仅揭示了miR-17 / 20在乳腺癌中的抗侵袭功能,而且还鉴定了介导肿瘤转移的microRNA调控的异型分泌信号。

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    Departments of Cancer Biology, Thomas Jefferson University and Hospital, Kimmel Cancer Center, Philadelphia, PA 19107;

    rnDepartments of Cancer Biology, Thomas Jefferson University and Hospital, Kimmel Cancer Center, Philadelphia, PA 19107;

    rnDepartments of Cancer Biology, Thomas Jefferson University and Hospital, Kimmel Cancer Center, Philadelphia, PA 19107;

    rnDepartments of Cancer Biology, Thomas Jefferson University and Hospital, Kimmel Cancer Center, Philadelphia, PA 19107 Departments of Medical Oncology, Thomas Jefferson University and Hospital, Kimmel Cancer Center, Philadelphia, PA 19107;

    rnDepartments of Cancer Biology, Thomas Jefferson University and Hospital, Kimmel Cancer Center, Philadelphia, PA 19107;

    rnDepartments of Cancer Biology, Thomas Jefferson University and Hospital, Kimmel Cancer Center, Philadelphia, PA 19107;

    rnDepartments of Pathology, Thomas Jefferson University and Hospital, Kimmel Cancer Center, Philadelphia, PA 19107;

    rnDepartments of Cancer Biology, Thomas Jefferson University and Hospital, Kimmel Cancer Center, Philadelphia, PA 19107;

    rnDepartments of Cancer Biology, Thomas Jefferson University and Hospital, Kimmel Cancer Center, Philadelphia, PA 19107;

    rnDepartments of Cancer Biology, Thomas Jefferson University and Hospital, Kimmel Cancer Center, Philadelphia, PA 19107 Departments of Medical Oncology, Thomas Jefferson University and Hospital, Kimmel Cancer Center, Philadelphia, PA 19107;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    cell secretion; plasminogen; cytokeratin 8; α-enolase;

    机译:细胞分泌纤溶酶原细胞角蛋白8;α-烯醇酶;

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