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Dihydropyrimidine Accumulation Is Required for the Epithelial-Mesenchymal Transition

机译:上皮-间质转化需要二氢嘧啶积累

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摘要

It is increasingly appreciated that oncogenic transformation alters cellular metabolism to facilitate cell proliferation, but less is known about the metabolic changes that promote cancer cell aggressiveness. Here,we analyzed metabolic gene expression in cancer cell lines and found that a set of high-grade carcinoma lines expressing mesenchymal markers share a unique 44 gene signature, designated the ''mesenchymal metabolic signature'' (MMS). A FACS-based shRNA screen identified several MMS genes as essential for the epithelial-mesenchymal transition (EMT), but not for cell proliferation. Dihydropyrimidine dehydrogenase (DPYD), a pyrimidine-degrading enzyme, was highly expressed upon EMT induction and was necessary for cells to acquire mesenchymal characteristics in vitro and for tumorigenic cells to extravasate into the mouse lung. This role of DPYD was mediated through its catalytic activity and enzymatic products, the dihydropyrimidines. Thus, we identify metabolic processes essential for the EMT, a program associated with the acquisition of metastatic and aggressive cancer cell traits.
机译:人们日益认识到,致癌转化改变细胞代谢以促进细胞增殖,但是对于促进癌细胞侵袭性的代谢变化知之甚少。在这里,我们分析了癌细胞系中代谢基因的表达,发现一组表达间充质标记的高级癌细胞系共享一个独特的44个基因标记,称为“间质代谢标记”(MMS)。基于FACS的shRNA筛选确定了多个MMS基因对于上皮-间质转化(EMT)是必不可少的,但对于细胞增殖不是必需的。二氢嘧啶脱氢酶(DPYD),一种嘧啶降解酶,在EMT诱导后高度表达,是细胞在体外获得间充质特征和致瘤细胞渗入小鼠肺所必需的。 DPYD的这种作用是通过其催化活性和酶产物二氢嘧啶来介导的。因此,我们确定了对EMT至关重要的代谢过程,该过程与获得转移性和侵袭性癌细胞特征有关。

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