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Regulation of Epithelial-Mesenchymal Transition in Breast Cancer Cells by Cell Contact and Adhesion

机译:通过细胞接触和粘附调节乳腺癌细胞上皮-间质转化

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Epithelial-mesenchymal transition (EMT) is a physiological program that is activated during cancer cell invasion and metastasis. We show here that EMT-related processes are linked to a broad and conserved program of transcriptional alterations that are influenced by cell contact and adhesion. Using cultured human breast cancer and mouse mammary epithelial cells, we find that reduced cell density, conditions under which cell contact is reduced, leads to reduced expression of genes associated with mammary epithelial cell differentiation and increased expression of genes associated with breast cancer. We further find that treatment of cells with matrix metalloproteinase-3 (MMP-3), an inducer of EMT, interrupts a defined subset of cell contact-regulated genes, including genes encoding a variety of RNA splicing proteins known to regulate the expression of Rac1b, an activated splice isoform of Rac1 known to be a key mediator of MMP-3-induced EMT in breast, lung, and pancreas. These results provide new insights into how MMPs act in cancer progression and how loss of cell–cell interactions is a key step in the earliest stages of cancer development.
机译:上皮-间质转化(EMT)是一种在癌细胞侵袭和转移过程中被激活的生理程序。我们在这里显示与EMT相关的过程与受细胞接触和粘附影响的转录改变的广泛且保守的程序相关。使用培养的人类乳腺癌和小鼠乳腺上皮细胞,我们发现降低的细胞密度,减少细胞接触的条件会导致与乳腺上皮细胞分化相关的基因表达减少以及与乳腺癌相关的基因表达增加。我们进一步发现,用基质金属蛋白酶3(MMP-3)(EMT的诱导剂)处理细胞会中断细胞接触调节基因的定义子集,包括编码已知可调节Rac1b表达的各种RNA剪接蛋白的基因。 ,是一种激活的Rac1剪接异构体,已知是MMP-3诱导的乳腺,肺脏和胰腺EMT的关键介体。这些结果为了解MMP在癌症进展中的作用以及细胞间相互作用的丧失是癌症发展最早阶段的关键步骤提供了新的见解。

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