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首页> 外文期刊>Cell death & disease. >LncRNA FOXC2-AS1 enhances FOXC2 mRNA stability to promote colorectal cancer progression via activation of Ca2 -FAK signal pathway
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LncRNA FOXC2-AS1 enhances FOXC2 mRNA stability to promote colorectal cancer progression via activation of Ca2 -FAK signal pathway

机译:LNCRNA FOXC2-AS1增强FOXC2 mRNA稳定性通过激活CA2-FAK信号途径促进结肠直肠癌进展

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Long noncoding RNAs (lncRNAs) have been confirmed, which are involved in tumorigenesis and metastasis in colorectal cancer (CRC). FOXC2 antisense RNA 1 (FOXC2-AS1) was reported, facilitating the proliferation and progression in several cancers. However, the role of FOXC2-AS1 in CRC cell migration and metastasis is not unclear. In this study, we observed that lncRNA FOXC2-AS1 was upregulated in CRC tissues, and its high expression indicated the poor survival in CRC patients. Meanwhile, FOXC2-AS1 was higher in CRC tissues with metastasis than that of nonmetastatic tumor tissues. We found that FOXC2-AS1 was predominately expressed in the nucleus of tissues and cells. FOXC2-AS1 knockdown suppressed CRC cell growth, invasion, and metastasis in vitro and in vivo. Moreover, FOXC2-AS1 could positively regulate the neighboring gene FOXC2 and stabilized FOXC2 mRNA by forming a RNA duplex. Meanwhile, ectopic expression of FOXC2 could obviously alleviate the suppressed effects caused by silencing FOXC2-AS1. For the mechanism, FOXC2-AS1 knockdown could reduce intracellular Ca2 levels, inhibited FA formation and FAK signaling, and these suppressed effects were mitigated by increasing FOXC2 expression. These results demonstrated that FOXC2-AS1 enhances FOXC2 mRNA stability to promote CRC proliferation, migration, and invasion by activation of Ca2 -FAK signaling, which implicates that FOXC2-AS1 may represent a latent effective therapeutic target for CRC progression.
机译:已经证实了长的非分量RNA(LNCRNA),其参与结肠直肠癌(CRC)中的肿瘤发生和转移。报道了FoxC2反义RNA 1(FOXC2-AS1),促进了几种癌症中的增殖和进展。然而,FoxC2-AS1在CRC细胞迁移和转移中的作用尚不清楚。在这项研究中,我们观察到LNCRNA FOXC2-AS1在CRC组织中上调,其高表达表明CRC患者的存活差。同时,FOXC2-AS1在CRC组织中具有较高,转移肿瘤组织比不转肿瘤组织。我们发现FoxC2-AS1主要在组织和细胞的细胞核中表达。 FoxC2-AS1敲低抑制了体外和体内的CRC细胞生长,侵袭和转移。此外,FoxC2-AS1可以通过形成RNA双链体来呈正调节相邻的基因FOXC2和稳定的FOXC2 mRNA。同时,FoxC2的异位表达可显然可以减轻沉默FoxC2-AS1引起的抑制作用。对于该机制,FOXC2-AS1敲低可以减少细胞内Ca2水平,抑制FA形成和FAK信号,通过增加FOXC2表达来减轻这些抑制效果。这些结果表明,FoxC2-AS1增强FoxC2 mRNA稳定性,以通过激活CA2 -Fak信号传导来促进CRC增殖,迁移和侵袭,这意味着FoxC2-AS1可以代表CRC进展的潜在有效治疗靶标。

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