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首页> 外文期刊>Journal of experimental & clinical cancer research : >Circular RNA circLMO7 acts as a microRNA-30a-3p sponge to promote gastric cancer progression via the WNT2/β-catenin pathway
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Circular RNA circLMO7 acts as a microRNA-30a-3p sponge to promote gastric cancer progression via the WNT2/β-catenin pathway

机译:圆形RNA Circlmo7充当MicroRNA-30A-3P海绵,以通过WNT2 /β-Catenin途径促进胃癌进展

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Gastric cancer (GC) is one of the most common malignant tumors worldwide. Currently, the overall survival rate of GC is still unsatisfactory despite progress in diagnosis and treatment. Therefore, studying the molecular mechanisms involved in GC is vital for diagnosis and treatment. CircRNAs, a type of noncoding RNA, have been proven to act as miRNA sponges that can widely regulate various cancers. By this mechanism, circRNA can regulate tumors at the genetic level by releasing miRNA from inhibiting its target genes. The WNT2/β-Catenin regulatory pathway is one of the canonical signaling pathways in tumors. It can not only promote the development of tumors but also provide energy for tumor growth through cell metabolism (such as glutamine metabolism). Through RNA sequencing, we found that hsa_circ_0008259 (circLMO7) was highly expressed in GC tissues. After verifying the circular characteristics of circLMO7, we determined the downstream miRNA (miR-30a-3p) of circLMO7 by RNA pull-down and luciferase reporter assays. We verified the effect of circLMO7 and miR-30a-3p on GC cells through a series of functional experiments, including colony formation, 5-ethynyl-2′-deoxyuridine and Transwell assays. Through Western blot and immunofluorescence analyses, we found that WNT2 was the downstream target gene of miR-30a-3p and further confirmed that the circLMO7-miR-30a-3p-WNT2 axis could promote the development of GC. In addition, measurement of related metabolites confirmed that this axis could also provide energy for the growth of GC cells through glutamine metabolism. We found that circLMO7 could promote the growth and metastasis of GC in vivo by the establishment of nude mouse models. Finally, we also demonstrated that HNRNPL could bind to the flanking introns of the circLMO7 exons to promote circLMO7 cyclization. CircLMO7 acted as a miR-30a-3p sponge affecting the WNT2/β-Catenin pathway to promote the proliferation, migration and invasion of GC cells. Moreover, animal results also showed that circLMO7 could promote GC growth and metastasis in vivo. CircLMO7 could also affect the glutamine metabolism of GC cells through the WNT2/β-Catenin pathway to promote its malignant biological function. In addition, we proved that HNRNPL could promote the self-cyclization of circLMO7. CircLMO7 promotes the development of GC by releasing the inhibitory effect of miR-30a-3p on its target gene WNT2.
机译:胃癌(GC)是全球最常见的恶性肿瘤之一。目前,尽管诊断和治疗进展,但GC的整体生存率仍然不令人满意。因此,研究涉及GC的分子机制对于诊断和治疗至关重要。 Circrnas是一种非编码RNA,已被证明是作为可以广泛调节各种癌症的miRNA海绵。通过这种机制,CircrNA可以通过释放miRNA来调节遗传水平的肿瘤来抑制其靶基因。 Wnt2 /β-catenin调节途径是肿瘤中的规范信号传导途径之一。它不仅可以促进肿瘤的发展,还可以通过细胞代谢(如谷氨酰胺代谢)为肿瘤生长提供能量。通过RNA测序,我们发现HSA_CIRC_0008259(CIRCLMO7)在GC组织中高度表达。在验证CiRClmo7的圆形特征后,我们确定Circlmo7的下游miRNA(miR-30a-3p)通过RNA下拉和荧光素酶报告结果测定。我们通过一系列功能实验验证了Circlmo7和miR-30a-3p对GC细胞的影响,包括菌落形成,5-炔基-2'-脱氧尿苷和Transwell测定。通过蛋白质印迹和免疫荧光分析,我们发现Wnt2是miR-30a-3p的下游靶基因,并进一步证实CIRCLMO7-MIR-30A-3P-WNT2轴可以促进GC的发育。此外,相关代谢物的测量证实,该轴还可以通过谷氨酰胺代谢来提供GC细胞的生长能量。我们发现Circlmo7可以通过建立裸鼠模型来促进GC的生长和转移。最后,我们还证明了HNRNPL可以与Circlmo7外显子的侧翼内含子结合以促进Circlmo7环化。 Circlmo7充当MiR-30a-3p海绵,影响Wnt2 /β-catenin途径,以促进GC细胞的增殖,迁移和侵袭。此外,动物结果还表明,Circlmo7可以促进体内GC生长和转移。 Circlmo7还可以通过Wnt2 /β-catenin途径影响GC细胞的谷氨酰胺代谢,以促进其恶性生物学功能。此外,我们证明了HNRNPL可以促进Circlmo7的自我环化。 Circlmo7通过释放miR-30a-3p对其靶基因Wnt2的抑制作用来促进GC的发展。

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