Patil Nitin, Abdelrahim Omar G, Leupold Jörg H, Allgayer Heike
Department of Experimental Surgery-Cancer Metastasis, Mannheim Medical Faculty, Ruprecht-Karls University of Heidelberg, 69047 Heidelberg, Germany.
Cancers (Basel). 2023 Dec 20;16(1):24. doi: 10.3390/cancers16010024.
MiR-494-5p expression has been suggested to be associated with colorectal cancer (CRC) and its metastases in our previous studies. However, functional investigations on the molecule-mediating actions of this miR in CRC are lacking. In silico analysis in the present study revealed a putative binding sequence within the 3'UTR of JAK1. Overexpression of miR-494-5p in cultured CRC significantly reduced the luciferase activity of a reporter plasmid containing the wild-type JAK1-3'UTR, which was abolished by seed sequence mutation. Furthermore, the overexpression of miR-494-5p in CRC cell lines led to a significant reduction in JAK1 expression, proliferation, in vitro migration, and invasion. These effects were abolished by co-transfection with a specific double-stranded RNA that inhibits endogenous miR-494-5p. Moreover, IL-4-induced migration, invasion, and phosphorylation of JAK1, STAT6, and AKT proteins were reduced after an overexpression of this miR, suggesting that this miR affects one of the most essential pathways in CRC. A Kaplan-Meier plotter analysis revealed that patients with high JAK1 expression show reduced survival. Together, these data suggest that miR-494-5p physically inhibits the expression of JAK1 at the translational level as well as in migration and invasion, supporting the hypothesis of miR-494-5p as an early tumor suppressor and inhibitor of early steps of metastasis in CRC.
在我们之前的研究中,已表明miR-494-5p的表达与结直肠癌(CRC)及其转移有关。然而,目前缺乏对该miR在CRC中介导分子作用的功能研究。本研究的计算机分析揭示了JAK1的3'UTR内的一个假定结合序列。在培养的CRC中过表达miR-494-5p显著降低了含有野生型JAK1-3'UTR的报告质粒的荧光素酶活性,而种子序列突变可消除这种降低。此外,在CRC细胞系中过表达miR-494-5p导致JAK1表达、增殖、体外迁移和侵袭显著降低。与抑制内源性miR-494-5p的特异性双链RNA共转染可消除这些作用。此外,过表达该miR后,IL-4诱导的JAK1、STAT6和AKT蛋白的迁移、侵袭和磷酸化降低,表明该miR影响了CRC中最关键的途径之一。Kaplan-Meier绘图分析显示,JAK1高表达的患者生存率降低。总之,这些数据表明miR-494-5p在翻译水平以及迁移和侵袭方面物理性抑制JAK1的表达,支持miR-494-5p作为CRC早期肿瘤抑制因子和转移早期步骤抑制剂的假设。