Cargando…

A deep investigation into the adipogenesis mechanism: Profile of microRNAs regulating adipogenesis by modulating the canonical Wnt/β-catenin signaling pathway

BACKGROUND: MicroRNAs (miRNAs) are a large class of tiny non-coding RNAs (~22-24 nt) that regulate diverse biological processes at the posttranscriptional level by controlling mRNA stability or translation. As a molecular switch, the canonical Wnt/β-catenin signaling pathway should be suppressed dur...

Descripción completa

Detalles Bibliográficos
Autores principales: Qin, Limei, Chen, Yaosheng, Niu, Yuna, Chen, Weiquan, Wang, Qiwei, Xiao, Shuqi, Li, Anning, Xie, Ying, Li, Jing, Zhao, Xiao, He, Zuyong, Mo, Delin
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2895628/
https://www.ncbi.nlm.nih.gov/pubmed/20492721
http://dx.doi.org/10.1186/1471-2164-11-320
_version_ 1782183271943110656
author Qin, Limei
Chen, Yaosheng
Niu, Yuna
Chen, Weiquan
Wang, Qiwei
Xiao, Shuqi
Li, Anning
Xie, Ying
Li, Jing
Zhao, Xiao
He, Zuyong
Mo, Delin
author_facet Qin, Limei
Chen, Yaosheng
Niu, Yuna
Chen, Weiquan
Wang, Qiwei
Xiao, Shuqi
Li, Anning
Xie, Ying
Li, Jing
Zhao, Xiao
He, Zuyong
Mo, Delin
author_sort Qin, Limei
collection PubMed
description BACKGROUND: MicroRNAs (miRNAs) are a large class of tiny non-coding RNAs (~22-24 nt) that regulate diverse biological processes at the posttranscriptional level by controlling mRNA stability or translation. As a molecular switch, the canonical Wnt/β-catenin signaling pathway should be suppressed during the adipogenesis; However, activation of this pathway leads to the inhibition of lipid depots formation. The aim of our studies was to identify miRNAs that might be involved in adipogenesis by modulating WNT signaling pathway. Here we established two types of cell model, activation and repression of WNT signaling, and investigated the expression profile of microRNAs using microarray assay. RESULTS: The high throughput microarray data revealed 18 miRNAs that might promote adipogenesis by repressing WNT signaling: miR-210, miR-148a, miR-194, miR-322 etc. Meanwhile, we also identified 29 miRNAs that might have negative effect on adipogenesis by activating WNT signaling: miR-344, miR-27 and miR-181 etc. The targets of these miRNAs were also analysed by bioinformatics. To validate the predicted targets and the potential functions of these identified miRNAs, the mimics of miR-210 were transfected into 3T3-L1 cells and enlarged cells with distinct lipid droplets were observed; Meanwhile, transfection with the inhibitor of miR-210 could markedly decrease differentiation-specific factors at the transcription level, which suggested the specific role of miR-210 in promoting adipogenesis. Tcf7l2, the predicted target of miR-210, is a transcription factor triggering the downstream responsive genes of WNT signaling, was blocked at transcription level. Furthermore, the activity of luciferase reporter bearing Tcf7l2 mRNA 3' UTR was decreased after co-transfection with miR-210 in HEK-293FT cells. Last but not least, the protein expression level of β-catenin was increased in the lithium (LiCl) treated 3T3-L1 cells after transfection with miR-210. These findings suggested that miR-210 could promote adipogenesis by repressing WNT signaling through targeting Tcf7l2. CONCLUSIONS: The results suggest the presence of miRNAs in two cell models, providing insights into WNT pathway-specific miRNAs that can be further characterized for their potential roles in adipogenesis. To our knowledge, present study represents the first attempt to unveil the profile of miRNAs involed in adipogenesis by modulating WNT signaling pathway, which contributed to deeper investigation of the mechanism of adipogenesis.
format Text
id pubmed-2895628
institution National Center for Biotechnology Information
language English
publishDate 2010
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-28956282010-07-02 A deep investigation into the adipogenesis mechanism: Profile of microRNAs regulating adipogenesis by modulating the canonical Wnt/β-catenin signaling pathway Qin, Limei Chen, Yaosheng Niu, Yuna Chen, Weiquan Wang, Qiwei Xiao, Shuqi Li, Anning Xie, Ying Li, Jing Zhao, Xiao He, Zuyong Mo, Delin BMC Genomics Research Article BACKGROUND: MicroRNAs (miRNAs) are a large class of tiny non-coding RNAs (~22-24 nt) that regulate diverse biological processes at the posttranscriptional level by controlling mRNA stability or translation. As a molecular switch, the canonical Wnt/β-catenin signaling pathway should be suppressed during the adipogenesis; However, activation of this pathway leads to the inhibition of lipid depots formation. The aim of our studies was to identify miRNAs that might be involved in adipogenesis by modulating WNT signaling pathway. Here we established two types of cell model, activation and repression of WNT signaling, and investigated the expression profile of microRNAs using microarray assay. RESULTS: The high throughput microarray data revealed 18 miRNAs that might promote adipogenesis by repressing WNT signaling: miR-210, miR-148a, miR-194, miR-322 etc. Meanwhile, we also identified 29 miRNAs that might have negative effect on adipogenesis by activating WNT signaling: miR-344, miR-27 and miR-181 etc. The targets of these miRNAs were also analysed by bioinformatics. To validate the predicted targets and the potential functions of these identified miRNAs, the mimics of miR-210 were transfected into 3T3-L1 cells and enlarged cells with distinct lipid droplets were observed; Meanwhile, transfection with the inhibitor of miR-210 could markedly decrease differentiation-specific factors at the transcription level, which suggested the specific role of miR-210 in promoting adipogenesis. Tcf7l2, the predicted target of miR-210, is a transcription factor triggering the downstream responsive genes of WNT signaling, was blocked at transcription level. Furthermore, the activity of luciferase reporter bearing Tcf7l2 mRNA 3' UTR was decreased after co-transfection with miR-210 in HEK-293FT cells. Last but not least, the protein expression level of β-catenin was increased in the lithium (LiCl) treated 3T3-L1 cells after transfection with miR-210. These findings suggested that miR-210 could promote adipogenesis by repressing WNT signaling through targeting Tcf7l2. CONCLUSIONS: The results suggest the presence of miRNAs in two cell models, providing insights into WNT pathway-specific miRNAs that can be further characterized for their potential roles in adipogenesis. To our knowledge, present study represents the first attempt to unveil the profile of miRNAs involed in adipogenesis by modulating WNT signaling pathway, which contributed to deeper investigation of the mechanism of adipogenesis. BioMed Central 2010-05-23 /pmc/articles/PMC2895628/ /pubmed/20492721 http://dx.doi.org/10.1186/1471-2164-11-320 Text en Copyright ©2010 Qin et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Qin, Limei
Chen, Yaosheng
Niu, Yuna
Chen, Weiquan
Wang, Qiwei
Xiao, Shuqi
Li, Anning
Xie, Ying
Li, Jing
Zhao, Xiao
He, Zuyong
Mo, Delin
A deep investigation into the adipogenesis mechanism: Profile of microRNAs regulating adipogenesis by modulating the canonical Wnt/β-catenin signaling pathway
title A deep investigation into the adipogenesis mechanism: Profile of microRNAs regulating adipogenesis by modulating the canonical Wnt/β-catenin signaling pathway
title_full A deep investigation into the adipogenesis mechanism: Profile of microRNAs regulating adipogenesis by modulating the canonical Wnt/β-catenin signaling pathway
title_fullStr A deep investigation into the adipogenesis mechanism: Profile of microRNAs regulating adipogenesis by modulating the canonical Wnt/β-catenin signaling pathway
title_full_unstemmed A deep investigation into the adipogenesis mechanism: Profile of microRNAs regulating adipogenesis by modulating the canonical Wnt/β-catenin signaling pathway
title_short A deep investigation into the adipogenesis mechanism: Profile of microRNAs regulating adipogenesis by modulating the canonical Wnt/β-catenin signaling pathway
title_sort deep investigation into the adipogenesis mechanism: profile of micrornas regulating adipogenesis by modulating the canonical wnt/β-catenin signaling pathway
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2895628/
https://www.ncbi.nlm.nih.gov/pubmed/20492721
http://dx.doi.org/10.1186/1471-2164-11-320
work_keys_str_mv AT qinlimei adeepinvestigationintotheadipogenesismechanismprofileofmicrornasregulatingadipogenesisbymodulatingthecanonicalwntbcateninsignalingpathway
AT chenyaosheng adeepinvestigationintotheadipogenesismechanismprofileofmicrornasregulatingadipogenesisbymodulatingthecanonicalwntbcateninsignalingpathway
AT niuyuna adeepinvestigationintotheadipogenesismechanismprofileofmicrornasregulatingadipogenesisbymodulatingthecanonicalwntbcateninsignalingpathway
AT chenweiquan adeepinvestigationintotheadipogenesismechanismprofileofmicrornasregulatingadipogenesisbymodulatingthecanonicalwntbcateninsignalingpathway
AT wangqiwei adeepinvestigationintotheadipogenesismechanismprofileofmicrornasregulatingadipogenesisbymodulatingthecanonicalwntbcateninsignalingpathway
AT xiaoshuqi adeepinvestigationintotheadipogenesismechanismprofileofmicrornasregulatingadipogenesisbymodulatingthecanonicalwntbcateninsignalingpathway
AT lianning adeepinvestigationintotheadipogenesismechanismprofileofmicrornasregulatingadipogenesisbymodulatingthecanonicalwntbcateninsignalingpathway
AT xieying adeepinvestigationintotheadipogenesismechanismprofileofmicrornasregulatingadipogenesisbymodulatingthecanonicalwntbcateninsignalingpathway
AT lijing adeepinvestigationintotheadipogenesismechanismprofileofmicrornasregulatingadipogenesisbymodulatingthecanonicalwntbcateninsignalingpathway
AT zhaoxiao adeepinvestigationintotheadipogenesismechanismprofileofmicrornasregulatingadipogenesisbymodulatingthecanonicalwntbcateninsignalingpathway
AT hezuyong adeepinvestigationintotheadipogenesismechanismprofileofmicrornasregulatingadipogenesisbymodulatingthecanonicalwntbcateninsignalingpathway
AT modelin adeepinvestigationintotheadipogenesismechanismprofileofmicrornasregulatingadipogenesisbymodulatingthecanonicalwntbcateninsignalingpathway
AT qinlimei deepinvestigationintotheadipogenesismechanismprofileofmicrornasregulatingadipogenesisbymodulatingthecanonicalwntbcateninsignalingpathway
AT chenyaosheng deepinvestigationintotheadipogenesismechanismprofileofmicrornasregulatingadipogenesisbymodulatingthecanonicalwntbcateninsignalingpathway
AT niuyuna deepinvestigationintotheadipogenesismechanismprofileofmicrornasregulatingadipogenesisbymodulatingthecanonicalwntbcateninsignalingpathway
AT chenweiquan deepinvestigationintotheadipogenesismechanismprofileofmicrornasregulatingadipogenesisbymodulatingthecanonicalwntbcateninsignalingpathway
AT wangqiwei deepinvestigationintotheadipogenesismechanismprofileofmicrornasregulatingadipogenesisbymodulatingthecanonicalwntbcateninsignalingpathway
AT xiaoshuqi deepinvestigationintotheadipogenesismechanismprofileofmicrornasregulatingadipogenesisbymodulatingthecanonicalwntbcateninsignalingpathway
AT lianning deepinvestigationintotheadipogenesismechanismprofileofmicrornasregulatingadipogenesisbymodulatingthecanonicalwntbcateninsignalingpathway
AT xieying deepinvestigationintotheadipogenesismechanismprofileofmicrornasregulatingadipogenesisbymodulatingthecanonicalwntbcateninsignalingpathway
AT lijing deepinvestigationintotheadipogenesismechanismprofileofmicrornasregulatingadipogenesisbymodulatingthecanonicalwntbcateninsignalingpathway
AT zhaoxiao deepinvestigationintotheadipogenesismechanismprofileofmicrornasregulatingadipogenesisbymodulatingthecanonicalwntbcateninsignalingpathway
AT hezuyong deepinvestigationintotheadipogenesismechanismprofileofmicrornasregulatingadipogenesisbymodulatingthecanonicalwntbcateninsignalingpathway
AT modelin deepinvestigationintotheadipogenesismechanismprofileofmicrornasregulatingadipogenesisbymodulatingthecanonicalwntbcateninsignalingpathway