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Post-Transcriptional Controls by Ribonucleoprotein Complexes in the Acquisition of Drug Resistance

机译:核糖蛋白复合物在耐药性获得中的转录后控制。

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Acquisition of drug resistance leads to failure of anti-cancer treatments and therapies. Although several successive chemotherapies are available, along with efforts towards clinical applications of new anti-cancer drugs, it is generally realized that there is a long way to go to treat cancers. Resistance to anti-cancer drugs results from various factors, including genetic as well as epigenetic differences in tumors. Determining the molecular and cellular mechanisms responsible for the acquisition of drug resistance may be a helpful approach for the development of new therapeutic strategies to overcome treatment failure. Several studies have shown that the acquisition of drug resistance is tightly regulated by post-transcriptional regulators such as RNA binding proteins (RBPs) and microRNAs (miRNAs), which change the stability and translation of mRNAs encoding factors involved in cell survival, proliferation, epithelial-mesenchymal transition, and drug metabolism. Here, we review our current understanding of ribonucleoprotein complexes, including RBPs and miRNAs, which play critical roles in the acquisition of drug resistance and have potential clinical implications for cancer.
机译:获得耐药性会导致抗癌治疗和疗法失败。尽管可以使用几种连续的化学疗法,以及努力将新的抗癌药用于临床,但人们普遍认识到治疗癌症还有很长的路要走。对抗癌药物的抗药性来自多种因素,包括肿瘤的遗传和表观遗传差异。确定负责获得耐药性的分子和细胞机制可能是开发克服治疗失败的新治疗策略的有用方法。几项研究表明,耐药性的获得受到转录后调节剂(例如RNA结合蛋白(RBP)和microRNA(miRNA))的严格调控,它们改变了涉及细胞存活,增殖,上皮细胞的编码因子的mRNA的稳定性和翻译。间质转化和药物代谢。在这里,我们回顾了我们目前对核糖核蛋白复合物(包括RBP和miRNA)的理解,这些复合物在获得耐药性中起关键作用,并且对癌症具有潜在的临床意义。

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