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Global microRNA level regulation of EGFR-driven cell-cycle protein network in breast cancer

机译:乳腺癌驱动的EGFR驱动的细胞周期蛋白网络的全球microRNA水平调节

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摘要

The EGFR-driven cell-cycle pathway has been extensively studied due to its pivotal role in breast cancer proliferation and pathogenesis. Although several studies reported regulation of individual pathway components by microRNAs (miRNAs), little is known about how miRNAs coordinate the EGFR protein network on a global miRNA (miRNome) level. Here, we combined a large-scale miRNA screening approach with a high-throughput proteomic readout and network-based data analysis to identify which miRNAs are involved, and to uncover potential regulatory patterns. Our results indicated that the regulation of proteins by miRNAs is dominated by the nucleotide matching mechanism between seed sequences of the miRNAs and 3′-UTR of target genes. Furthermore, the novel network-analysis methodology we developed implied the existence of consistent intrinsic regulatory patterns where miRNAs simultaneously co-regulate several proteins acting in the same functional module. Finally, our approach led us to identify and validate three miRNAs (miR-124, miR-147 and miR-193a-3p) as novel tumor suppressors that co-target EGFR-driven cell-cycle network proteins and inhibit cell-cycle progression and proliferation in breast cancer.
机译:由于EGFR驱动的细胞周期途径在乳腺癌增殖和发病机理中起着关键作用,因此已被广泛研究。尽管有几项研究报道了微小RNA(miRNA)对单个途径成分的调节作用,但人们对miRNA在全球miRNA(miRNome)水平上如何协调EGFR蛋白网络了解甚少。在这里,我们将大规模的miRNA筛选方法与高通量蛋白质组学读数和基于网络的数据分析相结合,以识别涉及的miRNA,并揭示潜在的调控模式。我们的结果表明,miRNA对蛋白质的调控主要由miRNA种子序列与靶基因3'-UTR之间的核苷酸匹配机制决定。此外,我们开发的新型网络分析方法暗示了一致的内在调节模式的存在,其中miRNA同时共同调节在同一功能模块中起作用的几种蛋白质。最后,我们的方法使我们鉴定并验证了三种miRNA(miR-124,miR-147和miR-193a-3p)作为新型肿瘤抑制因子,它们共同靶向EGFR驱动的细胞周期网络蛋白并抑制细胞周期进程,乳腺癌中的增殖。

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