Cargando…
m(6)A Modification of Long Non-Coding RNA HNF1A-AS1 Facilitates Cell Cycle Progression in Colorectal Cancer via IGF2BP2-Mediated CCND1 mRNA Stabilization
Background: Long non-coding RNAs modulate tumor occurrence through different molecular mechanisms. It had been reported that HNF1A-AS1 (HNF1A Antisense RNA 1) was differently expressed in multiple tumors. The role of HNF1A-AS1 in colorectal cancer was less analyzed, and the mechanism of regulating t...
Autores principales: | , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2022
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9562639/ https://www.ncbi.nlm.nih.gov/pubmed/36230970 http://dx.doi.org/10.3390/cells11193008 |
_version_ | 1784808218902396928 |
---|---|
author | Bian, Yibo Wang, Yang Xu, Shufen Gao, Zhishuang Li, Chao Fan, Zongyao Ding, Jie Wang, Keming |
author_facet | Bian, Yibo Wang, Yang Xu, Shufen Gao, Zhishuang Li, Chao Fan, Zongyao Ding, Jie Wang, Keming |
author_sort | Bian, Yibo |
collection | PubMed |
description | Background: Long non-coding RNAs modulate tumor occurrence through different molecular mechanisms. It had been reported that HNF1A-AS1 (HNF1A Antisense RNA 1) was differently expressed in multiple tumors. The role of HNF1A-AS1 in colorectal cancer was less analyzed, and the mechanism of regulating the cell cycle has not been completely elucidated. Methods: Differentially expressed lncRNAs were screened out from the TCGA database. HNF1A-AS1 was examined in CRC clinical samples and cell lines by RT-qPCR. CCK8 assay, colony formation assay, flow cytometry, transwell assays, tube forming assay and vivo experiments were performed to study the function of HNF1A-AS1 in CRC tumor progression. Bioinformatic analysis, luciferase report assay, RNA pull-down and RIP assays were carried out to explore proteins binding HNF1A-AS1 and the potential downstream targets. Results: Our results showed that HNF1A-AS1 was upregulated in CRC and associated with unfavorable prognosis. HNF1A-AS1 promoted proliferation, migration and angiogenesis, accelerated cell cycle and reduced cell apoptosis in CRC. Bioinformatics prediction and further experiments proved that HNF1A-AS1 could promote CCND1 expression by suppressing PDCD4 or competitively sponging miR-93-5p. Meanwhile, METTL3 mediated HNF1A-AS1 m(6)A modification and affected its RNA stability. HNF1A-AS1/IGF2BP2/CCND1 may act as a complex to regulate the stability of CCND1. Conclusion: In summary, our result reveals the novel mechanism in which m(6)A-mediated HNF1A-AS1/IGF2BP2/CCND1 axis promotes CRC cell cycle progression, along with competitively sponging miR-93-5p to upregulate CCND1, demonstrating its significant role in cell cycle regulation and suggesting that HNF1A-AS1 may act as a potential prognostic marker of colorectal cancer in the future. |
format | Online Article Text |
id | pubmed-9562639 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-95626392022-10-15 m(6)A Modification of Long Non-Coding RNA HNF1A-AS1 Facilitates Cell Cycle Progression in Colorectal Cancer via IGF2BP2-Mediated CCND1 mRNA Stabilization Bian, Yibo Wang, Yang Xu, Shufen Gao, Zhishuang Li, Chao Fan, Zongyao Ding, Jie Wang, Keming Cells Article Background: Long non-coding RNAs modulate tumor occurrence through different molecular mechanisms. It had been reported that HNF1A-AS1 (HNF1A Antisense RNA 1) was differently expressed in multiple tumors. The role of HNF1A-AS1 in colorectal cancer was less analyzed, and the mechanism of regulating the cell cycle has not been completely elucidated. Methods: Differentially expressed lncRNAs were screened out from the TCGA database. HNF1A-AS1 was examined in CRC clinical samples and cell lines by RT-qPCR. CCK8 assay, colony formation assay, flow cytometry, transwell assays, tube forming assay and vivo experiments were performed to study the function of HNF1A-AS1 in CRC tumor progression. Bioinformatic analysis, luciferase report assay, RNA pull-down and RIP assays were carried out to explore proteins binding HNF1A-AS1 and the potential downstream targets. Results: Our results showed that HNF1A-AS1 was upregulated in CRC and associated with unfavorable prognosis. HNF1A-AS1 promoted proliferation, migration and angiogenesis, accelerated cell cycle and reduced cell apoptosis in CRC. Bioinformatics prediction and further experiments proved that HNF1A-AS1 could promote CCND1 expression by suppressing PDCD4 or competitively sponging miR-93-5p. Meanwhile, METTL3 mediated HNF1A-AS1 m(6)A modification and affected its RNA stability. HNF1A-AS1/IGF2BP2/CCND1 may act as a complex to regulate the stability of CCND1. Conclusion: In summary, our result reveals the novel mechanism in which m(6)A-mediated HNF1A-AS1/IGF2BP2/CCND1 axis promotes CRC cell cycle progression, along with competitively sponging miR-93-5p to upregulate CCND1, demonstrating its significant role in cell cycle regulation and suggesting that HNF1A-AS1 may act as a potential prognostic marker of colorectal cancer in the future. MDPI 2022-09-27 /pmc/articles/PMC9562639/ /pubmed/36230970 http://dx.doi.org/10.3390/cells11193008 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Bian, Yibo Wang, Yang Xu, Shufen Gao, Zhishuang Li, Chao Fan, Zongyao Ding, Jie Wang, Keming m(6)A Modification of Long Non-Coding RNA HNF1A-AS1 Facilitates Cell Cycle Progression in Colorectal Cancer via IGF2BP2-Mediated CCND1 mRNA Stabilization |
title | m(6)A Modification of Long Non-Coding RNA HNF1A-AS1 Facilitates Cell Cycle Progression in Colorectal Cancer via IGF2BP2-Mediated CCND1 mRNA Stabilization |
title_full | m(6)A Modification of Long Non-Coding RNA HNF1A-AS1 Facilitates Cell Cycle Progression in Colorectal Cancer via IGF2BP2-Mediated CCND1 mRNA Stabilization |
title_fullStr | m(6)A Modification of Long Non-Coding RNA HNF1A-AS1 Facilitates Cell Cycle Progression in Colorectal Cancer via IGF2BP2-Mediated CCND1 mRNA Stabilization |
title_full_unstemmed | m(6)A Modification of Long Non-Coding RNA HNF1A-AS1 Facilitates Cell Cycle Progression in Colorectal Cancer via IGF2BP2-Mediated CCND1 mRNA Stabilization |
title_short | m(6)A Modification of Long Non-Coding RNA HNF1A-AS1 Facilitates Cell Cycle Progression in Colorectal Cancer via IGF2BP2-Mediated CCND1 mRNA Stabilization |
title_sort | m(6)a modification of long non-coding rna hnf1a-as1 facilitates cell cycle progression in colorectal cancer via igf2bp2-mediated ccnd1 mrna stabilization |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9562639/ https://www.ncbi.nlm.nih.gov/pubmed/36230970 http://dx.doi.org/10.3390/cells11193008 |
work_keys_str_mv | AT bianyibo m6amodificationoflongnoncodingrnahnf1aas1facilitatescellcycleprogressionincolorectalcancerviaigf2bp2mediatedccnd1mrnastabilization AT wangyang m6amodificationoflongnoncodingrnahnf1aas1facilitatescellcycleprogressionincolorectalcancerviaigf2bp2mediatedccnd1mrnastabilization AT xushufen m6amodificationoflongnoncodingrnahnf1aas1facilitatescellcycleprogressionincolorectalcancerviaigf2bp2mediatedccnd1mrnastabilization AT gaozhishuang m6amodificationoflongnoncodingrnahnf1aas1facilitatescellcycleprogressionincolorectalcancerviaigf2bp2mediatedccnd1mrnastabilization AT lichao m6amodificationoflongnoncodingrnahnf1aas1facilitatescellcycleprogressionincolorectalcancerviaigf2bp2mediatedccnd1mrnastabilization AT fanzongyao m6amodificationoflongnoncodingrnahnf1aas1facilitatescellcycleprogressionincolorectalcancerviaigf2bp2mediatedccnd1mrnastabilization AT dingjie m6amodificationoflongnoncodingrnahnf1aas1facilitatescellcycleprogressionincolorectalcancerviaigf2bp2mediatedccnd1mrnastabilization AT wangkeming m6amodificationoflongnoncodingrnahnf1aas1facilitatescellcycleprogressionincolorectalcancerviaigf2bp2mediatedccnd1mrnastabilization |