Mendonça Daniela Baccelli, Nguyen Joe Truong, Haidar Fatima, Fox Alexandra Lucienne, Ray Connor, Amatullah Halimah, Liu Fei, Kim Jin Koo, Krebsbach Paul H
Department of Biologic and Materials Sciences, University of Michigan, Ann Arbor, MI, 48105, USA.
Biointerfaces Institute, University of Michigan, Ann Arbor, MI, 48105, USA.
Heliyon. 2020 Dec 19;6(12):e05734. doi: 10.1016/j.heliyon.2020.e05734. eCollection 2020 Dec.
Regulation of mTOR signaling depends on an intricate interplay of post-translational protein modification. Recently, mEAK-7 (mTOR associated protein, eak-7 homolog) was identified as a positive activator of mTOR signaling via an alternative mTOR complex. However, the upstream regulation of mEAK-7 in human cells is not known. Because microRNAs are capable of modulating protein translation of RNA in eukaryotes, we conducted a bioinformatic search for relevant mEAK-7 targeting microRNAs using the Exiqon miRSearch V3.0 algorithm. Based on the score obtained through miRSearch V3.0, the top predicted miRNA (miR-1911-3p) was studied. miR-1911-3p mimics decreased protein levels of both mEAK-7 and mTORC1 downstream effectors p-S6 and p-4E-BP1 in non-small cell lung carcinoma (NSCLC) cell lines H1975 and H1299. miR-1911-3p levels and mRNA/mEAK-7/mTOR signaling levels were negatively correlated between normal lung and NSCLC cells. miR-1911-3p directly interacted with mRNA at the 3'-UTR to negatively regulate mEAK-7 and significantly decreased mTOR localization to the lysosome. Furthermore, miR-1911-3p significantly decreased cell proliferation and migration in both H1975 and H1299 cells. Thus, miR-1911-3p functions as a suppressor of mTOR signaling through the regulation of mRNA translation in human cancer cells.
mTOR信号传导的调节取决于翻译后蛋白质修饰的复杂相互作用。最近,mEAK-7(mTOR相关蛋白,eak-7同源物)通过一种替代性mTOR复合物被鉴定为mTOR信号传导的正激活剂。然而,人类细胞中mEAK-7的上游调节尚不清楚。由于微小RNA能够调节真核生物中RNA的蛋白质翻译,我们使用Exiqon miRSearch V3.0算法对靶向mEAK-7的相关微小RNA进行了生物信息学搜索。基于通过miRSearch V3.0获得的分数,对预测排名靠前的微小RNA(miR-1911-3p)进行了研究。在非小细胞肺癌(NSCLC)细胞系H1975和H1299中,miR-1911-3p模拟物降低了mEAK-7和mTORC1下游效应物p-S6和p-4E-BP1的蛋白质水平。正常肺细胞和NSCLC细胞之间,miR-1911-3p水平与mRNA/mEAK-7/mTOR信号水平呈负相关。miR-1911-3p在3'-UTR处与mRNA直接相互作用,以负向调节mEAK-7,并显著降低mTOR在溶酶体的定位。此外,miR-1911-3p显著降低了H1975和H1299细胞的增殖和迁移。因此,miR-1911-3p通过调节人类癌细胞中的mRNA翻译,发挥mTOR信号传导抑制剂的作用。