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The TWIST1-centered competing endogenous RNA network promotes proliferation, invasion, and migration of lung adenocarcinoma

机译:以循环的竞争内源性RNA网络促进肺腺癌的增殖,侵袭和迁移

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The proposed competing endogenous RNA (ceRNA) mechanism suggested that diverse RNA species, including protein-coding messenger RNAs and non-coding RNAs such as long non-coding RNAs, pseudogenes and circular RNAs could communicate with each other by competing for binding to shared microRNAs. The ceRNA network (ceRNET) is involved in tumor progression and has become a hot research topic in recent years. To date, more attention has been paid to the role of non-coding RNAs in ceRNA crosstalk. However, coding transcripts are more abundant and powerful than non-coding RNAs and make up the majority of miRNA targets. In this study, we constructed a mRNA-mRNA related ceRNET of lung adenocarcinoma (LUAD) and identified the highlighted TWIST1-centered ceRNET, which recruits SLC12A5 and ZFHX4 as its ceRNAs. We found that TWIST1/SLC12A5/ZFHX4 are all upregulated in LUAD and are associated with poorer prognosis. SLC12A5 and ZFHX4 facilitated proliferation, migration, and invasion in vivo and in vitro, and their effects were reversed by miR-194-3p and miR-514a-3p, respectively. We further verified that SLC12A5 and ZFHX4 affected the function of TWIST1 by acting as ceRNAs. In summary, we constructed a mRNA-mRNA related ceRNET for LUAD and highlighted the well-known oncogene TWIST1. Then we verified that SLC12A5 and ZFHX4 exert their oncogenic function by regulating TWIST1 expression through a ceRNA mechanism.
机译:提出的竞争内源性RNA(Cerna)机制表明,不同的RNA物种,包括蛋白质编码信使RNA和非编码RNA,如长的非编码RNA,伪变性和圆形RNA可以通过竞争与共享微大罗纳的结合相互通信。 Cerna Network(Cernet)涉及肿瘤进展,近年来已成为一个热门的研究课题。迄今为止,已将非编码RNA在Cerna Crosstalk中的作用进行更多关注。然而,编码转录物比非编码RNA更丰富,强大,并构成大多数miRNA靶标。在这项研究中,我们构建了一种MRNA-mRNA相关的肺腺癌(LUAD)相关细胞,并确定了突出的Twist1中心Cernet,其招募SLC12A5和ZFHX4作为其Cernas。我们发现Twist1 / SLC12A5 / ZFHX4全部在管道上升,并与预后较差。 SLC12A5和ZFHX4促进体内和体内的增殖,迁移和侵袭,其效应分别由MIR-194-3P和MIR-514A-3P逆转。我们进一步验证了SLC12A5和ZFHX4通过充当Cernas影响Twist1的功能。总之,我们构建了管道的mRNA-mRNA相关的Cernet并突出了众所周知的癌基因Twist1。然后,我们验证了SLC12A5和ZFHX4通过通过Cerna机制调节Twist1表达来施加致癌功能。

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