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上下文依赖的miR-204和miR-211影响无色素性和色素性黑色素瘤细胞的生物学特性。

Context-dependent miR-204 and miR-211 affect the biological properties of amelanotic and melanotic melanoma cells.

作者信息

Vitiello Marianna, Tuccoli Andrea, D'Aurizio Romina, Sarti Samanta, Giannecchini Laura, Lubrano Simone, Marranci Andrea, Evangelista Monica, Peppicelli Silvia, Ippolito Chiara, Barravecchia Ivana, Guzzolino Elena, Montagnani Valentina, Gowen Michael, Mercoledi Elisa, Mercatanti Alberto, Comelli Laura, Gurrieri Salvatore, Wu Lawrence W, Ope Omotayo, Flaherty Keith, Boland Genevieve M, Hammond Marc R, Kwong Lawrence, Chiariello Mario, Stecca Barbara, Zhang Gao, Salvetti Alessandra, Angeloni Debora, Pitto Letizia, Calorini Lido, Chiorino Giovanna, Pellegrini Marco, Herlyn Meenhard, Osman Iman, Poliseno Laura

机构信息

Oncogenomics Unit, Core Research Laboratory, Istituto Toscano Tumori (ITT), AOUP, Pisa, Italy.

Institute of Clinical Physiology (IFC), CNR, Pisa, Italy.

出版信息

Oncotarget. 2017 Apr 11;8(15):25395-25417. doi: 10.18632/oncotarget.15915.

Abstract

Despite increasing amounts of experimental evidence depicting the involvement of non-coding RNAs in cancer, the study of BRAFV600E-regulated genes has thus far focused mainly on protein-coding ones. Here, we identify and study the microRNAs that BRAFV600E regulates through the ERK pathway.By performing small RNA sequencing on A375 melanoma cells and a vemurafenib-resistant clone that was taken as negative control, we discover miR-204 and miR-211 as the miRNAs most induced by vemurafenib. We also demonstrate that, although belonging to the same family, these two miRNAs have distinctive features. miR-204 is under the control of STAT3 and its expression is induced in amelanotic melanoma cells, where it acts as an effector of vemurafenib's anti-motility activity by targeting AP1S2. Conversely, miR-211, a known transcriptional target of MITF, is induced in melanotic melanoma cells, where it targets EDEM1 and consequently impairs the degradation of TYROSINASE (TYR) through the ER-associated degradation (ERAD) pathway. In doing so, miR-211 serves as an effector of vemurafenib's pro-pigmentation activity. We also show that such an increase in pigmentation in turn represents an adaptive response that needs to be overcome using appropriate inhibitors in order to increase the efficacy of vemurafenib.In summary, we unveil the distinct and context-dependent activities exerted by miR-204 family members in melanoma cells. Our work challenges the widely accepted "same miRNA family = same function" rule and provides a rationale for a novel treatment strategy for melanotic melanomas that is based on the combination of ERK pathway inhibitors with pigmentation inhibitors.

摘要

尽管越来越多的实验证据表明非编码RNA参与癌症,但迄今为止,对BRAFV600E调控基因的研究主要集中在蛋白质编码基因上。在这里,我们鉴定并研究了BRAFV600E通过ERK途径调控的微小RNA。通过对A375黑色素瘤细胞和作为阴性对照的维莫非尼耐药克隆进行小RNA测序,我们发现miR-204和miR-211是维莫非尼诱导最多的微小RNA。我们还证明,尽管这两种微小RNA属于同一家族,但它们具有独特的特征。miR-204受STAT3调控,其表达在无黑色素黑色素瘤细胞中被诱导,在这些细胞中它通过靶向AP1S2发挥维莫非尼抗迁移活性的效应器作用。相反,miR-211是MITF的已知转录靶点,在有黑色素黑色素瘤细胞中被诱导,在这些细胞中它靶向EDEM1,从而通过内质网相关降解(ERAD)途径损害酪氨酸酶(TYR)的降解。在此过程中,miR-211作为维莫非尼促色素沉着活性的效应器。我们还表明,这种色素沉着的增加反过来代表一种适应性反应,需要使用适当的抑制剂来克服,以提高维莫非尼的疗效。总之,我们揭示了miR-204家族成员在黑色素瘤细胞中发挥的独特且依赖于背景的活性。我们的工作挑战了广泛接受的“同一家族的微小RNA =相同功能”规则,并为基于ERK途径抑制剂与色素沉着抑制剂联合的有黑色素黑色素瘤新治疗策略提供了理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27de/5421939/eee6ae8905a3/oncotarget-08-25395-g001.jpg

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