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TGF beta and Hippo Pathways Cooperate to Enhance Sarcomagenesis and Metastasis through the Hyaluronan-Mediated Motility Receptor (HMMR)

机译:TGFβ和河马途径通过透明质酸介导的运动受体(HMMR)合作以增强SARComagenesis和转移

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摘要

High-grade sarcomas are metastatic and pose a serious threat to patient survival. Undifferentiated pleomorphic sarcoma (UPS) is a particularly dangerous and relatively common sarcoma subtype diagnosed in adults. UPS contains large quantities of extracellular matrix (ECM) including hyaluronic acid (HA), which is linked to metastatic potential. Consistent with these observations, expression of the HA receptor, hyaluronan-mediated motility receptor (HMMR/RHAMM), is tightly controlled in normal tissues and upregulated in UPS. Moreover, HMMR expression correlates with poor clinical outcome in these patients. Deregulation of the tumor-suppressive Hippo pathway is also linked to poor outcome in these patients. YAP1, the transcriptional regulator and central effector of Hippo pathway, is aberrantly stabilized in UPS and was recently shown to control RHAMM expression in breast cancer cells. Interestingly, both YAP1 and RHAMM are linked to TGF beta signaling. Therefore, we investigated crosstalk between YAP1 and TGFb resulting in enhanced RHAMM-mediated cell migration and invasion. We observed that HMMR expression is under the control of both YAP1 and TGFb and can be effectively targeted with small-molecule approaches that inhibit these pathways. Furthermore, we found that RHAMM expression promotes tumor cell proliferation and migration/invasion. To test these observations in a robust and quantifiable in vivo system, we developed a zebrafish xenograft assay of metastasis, which is complimentary to our murine studies. Importantly, pharmacologic inhibition of the TGF beta-YAP1-RHAMM axis prevents vascular migration of tumor cells to distant sites.
机译:高档肉瘤是转移性的,对患者生存构成严重威胁。未分化的亲主肉瘤(UPS)是诊断为成年人的特别危险且相对常见的肉瘤亚型。 UPS含有大量的细胞外基质(ECM),包括透明质酸(HA),其与转移潜力相关联。与这些观察结果一致,HA受体的表达,透明质酸介导的运动受体(HMMR / RHAMM)在正常组织中紧密控制并在UPS中上调。此外,HMMR表达与这些患者的临床结果不良相关。对肿瘤抑制性河马途径的放松管制也与这些患者的差异有关。 YAP1,河马途径的转录调节剂和中枢效应器在UPS中被异常稳定,最近显示在乳腺癌细胞中控制RHAMM表达。有趣的是,YAP1和RHAM都与TGFβ信令相关联。因此,我们研究了YAP1和TGFB之间的串扰,导致Rhamm介导的细胞迁移和侵袭增强。我们观察到HMMR表达处于YAP1和TGFB的控制下,可以有效地靶向抑制这些途径的小分子方法。此外,我们发现Rhamm表达促进肿瘤细胞增殖和迁移/侵袭。为了在体内系统的稳健和可量化中测试这些观察,我们开发了一种转移的斑马鱼异种移植测定,这是对我们的小鼠研究互动的。重要的是,TGFβ-YAP1-RHAMM轴的药理抑制阻止肿瘤细胞对远处部位的血管迁移。

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