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MiR-146a Regulates Migration and Invasion by Targeting NRP2 in Circulating-Tumor Cell Mimicking Suspension Cells

机译:miR-146a通过靶向循环肿瘤细胞中的NRP2来调节迁移和侵袭模拟悬浮细胞

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摘要

Cancer metastasis is the primary cause of cancer-related death and metastatic cancer has circulating-tumor cells (CTCs), which circulate in the bloodstream before invading other organs. Thus, understanding the precise role of CTCs may provide new insights into the metastasis process and reduce cancer mortality. However, the molecular characteristics of CTCs are not well understood due to a lack of number of CTCs. Therefore, suspension cells were generated from MDA-MB-468 cells to mimic CTCs, and we investigate the microRNA (miRNA)-dependent molecular networks and their role in suspension cells. Here, we present an integrated analysis of mRNA and miRNA sequencing data for suspension cell lines, through comparison with adherent cells. Among the differentially regulated miRNA–mRNAs axes, we focus on the miR-146a-Neuropilin2 (NRP2) axis, which is known to influence tumor aggressiveness. We show that miR-146a directly regulates NRP2 expression and inhibits Semaphorin3C (SEMA3C) signaling. Functional studies reveal that miR-146a represses SEMA3C-induced invasion and proliferation by targeting NRP2. Finally, high-NRP2 is shown to be associated with poor outcomes in breast cancer patients. This study identifies the key role of the miR-146a–NRP2 signaling axis that is critical for the regulation of migration and invasion in CTC-mimicking cells.
机译:癌症转移是癌症相关的死亡和转移性癌症的主要原因具有循环肿瘤细胞(CTC),在入侵其他器官之前在血液中循环。因此,了解CTCs的确切作用可能对转移过程提供新的见解,并降低癌症死亡率。然而,由于缺乏CTC,CTCs的分子特征尚不清楚。因此,从MDA-MB-468细胞产生悬浮细胞以模拟CTC,并研究MicroRNA(miRNA)依赖性分子网络及其在悬浮细胞中的作用。这里,我们通过与粘附细胞的比较,介绍了MRNA和miRNA测序数据的MRNA和miRNA测序数据。在差异调节的miRNA-mRNA轴中,我们专注于MiR-146A-Neuropilin2(NRP2)轴,这已知影响肿瘤侵袭性。我们表明MIR-146A直接调节NRP2表达并抑制Semaphorin3C(SEMA3C)信号传导。功能性研究表明,MiR-146A通过靶向NRP2抑制SEMA3C诱导的侵袭和增殖。最后,显示高NRP2与乳腺癌患者的差异有关。本研究识别MIR-146A-NRP2信号轴的关键作用,这对于CTC模仿细胞中的迁移和侵袭调节至关重要。

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