Cargando…

MiR-532-5p suppresses renal cancer cell proliferation by disrupting the ETS1-mediated positive feedback loop with the KRAS-NAP1L1/P-ERK axis

BACKGROUND: Despite the fact that miRNAs play pivotal roles in various human malignancies, their molecular mechanisms influencing RCC are poorly understood. METHODS: The expression of miRNAs from RCC and paired normal renal specimens was analysed by a combined computational and experimental approach...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhai, Wei, Ma, Junjie, Zhu, Rujian, Xu, Chen, Zhang, Jin, Chen, Yonghui, Chen, Zhiguo, Gong, Dongkui, Zheng, Jiayi, Chen, Chen, Li, Saiyang, Li, Butang, Huang, Yiran, Xue, Wei, Zheng, Junhua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6162242/
https://www.ncbi.nlm.nih.gov/pubmed/30082686
http://dx.doi.org/10.1038/s41416-018-0196-5
_version_ 1783359100435824640
author Zhai, Wei
Ma, Junjie
Zhu, Rujian
Xu, Chen
Zhang, Jin
Chen, Yonghui
Chen, Zhiguo
Gong, Dongkui
Zheng, Jiayi
Chen, Chen
Li, Saiyang
Li, Butang
Huang, Yiran
Xue, Wei
Zheng, Junhua
author_facet Zhai, Wei
Ma, Junjie
Zhu, Rujian
Xu, Chen
Zhang, Jin
Chen, Yonghui
Chen, Zhiguo
Gong, Dongkui
Zheng, Jiayi
Chen, Chen
Li, Saiyang
Li, Butang
Huang, Yiran
Xue, Wei
Zheng, Junhua
author_sort Zhai, Wei
collection PubMed
description BACKGROUND: Despite the fact that miRNAs play pivotal roles in various human malignancies, their molecular mechanisms influencing RCC are poorly understood. METHODS: The expression of miRNAs from RCC and paired normal renal specimens was analysed by a combined computational and experimental approach using two published datasets and qRT-PCR assays. The functional role of these miRNAs was further identified by overexpression and inhibition assays in vivo and in vitro. Western blots, luciferase assays, and chromatin immunoprecipitation were performed to investigate the potential mechanisms of these miRNAs. RESULTS: Bioinformatics analysis and qRT-PCR revealed that miR-532-5p was one of the most heavily downregulated miRNAs. Overexpression of miR-532-5p inhibited RCC cell proliferation, while knockdown of miR-532-5p promoted cell proliferation. Mechanistic analyses indicated that miR-532-5p directly targets KRAS and NAP1L1. Interestingly, ETS1 suppressed the transcription of miR-532-5p by directly binding a special region of its promoter. Moreover, high levels of ETS1, as an oncogene in RCC, were significantly associated with poor survival in a large cohort of RCC specimens. CONCLUSIONS: Our work presents a road map for the prediction and validation of a miR-532-5p/KRAS-NAP1L1/P-ERK/ETS1 axis feedback loop regulating cell proliferation, which could potentially provide better therapeutic avenues for treating RCC.
format Online
Article
Text
id pubmed-6162242
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Nature Publishing Group UK
record_format MEDLINE/PubMed
spelling pubmed-61622422019-08-28 MiR-532-5p suppresses renal cancer cell proliferation by disrupting the ETS1-mediated positive feedback loop with the KRAS-NAP1L1/P-ERK axis Zhai, Wei Ma, Junjie Zhu, Rujian Xu, Chen Zhang, Jin Chen, Yonghui Chen, Zhiguo Gong, Dongkui Zheng, Jiayi Chen, Chen Li, Saiyang Li, Butang Huang, Yiran Xue, Wei Zheng, Junhua Br J Cancer Article BACKGROUND: Despite the fact that miRNAs play pivotal roles in various human malignancies, their molecular mechanisms influencing RCC are poorly understood. METHODS: The expression of miRNAs from RCC and paired normal renal specimens was analysed by a combined computational and experimental approach using two published datasets and qRT-PCR assays. The functional role of these miRNAs was further identified by overexpression and inhibition assays in vivo and in vitro. Western blots, luciferase assays, and chromatin immunoprecipitation were performed to investigate the potential mechanisms of these miRNAs. RESULTS: Bioinformatics analysis and qRT-PCR revealed that miR-532-5p was one of the most heavily downregulated miRNAs. Overexpression of miR-532-5p inhibited RCC cell proliferation, while knockdown of miR-532-5p promoted cell proliferation. Mechanistic analyses indicated that miR-532-5p directly targets KRAS and NAP1L1. Interestingly, ETS1 suppressed the transcription of miR-532-5p by directly binding a special region of its promoter. Moreover, high levels of ETS1, as an oncogene in RCC, were significantly associated with poor survival in a large cohort of RCC specimens. CONCLUSIONS: Our work presents a road map for the prediction and validation of a miR-532-5p/KRAS-NAP1L1/P-ERK/ETS1 axis feedback loop regulating cell proliferation, which could potentially provide better therapeutic avenues for treating RCC. Nature Publishing Group UK 2018-08-07 2018-08-28 /pmc/articles/PMC6162242/ /pubmed/30082686 http://dx.doi.org/10.1038/s41416-018-0196-5 Text en © Cancer Research UK 2018 https://creativecommons.org/licenses/by/4.0/This work is published under the standard license to publish agreement. After 12 months the work will become freely available and the license terms will switch to a Creative Commons Attribution 4.0 International (CC BY 4.0).
spellingShingle Article
Zhai, Wei
Ma, Junjie
Zhu, Rujian
Xu, Chen
Zhang, Jin
Chen, Yonghui
Chen, Zhiguo
Gong, Dongkui
Zheng, Jiayi
Chen, Chen
Li, Saiyang
Li, Butang
Huang, Yiran
Xue, Wei
Zheng, Junhua
MiR-532-5p suppresses renal cancer cell proliferation by disrupting the ETS1-mediated positive feedback loop with the KRAS-NAP1L1/P-ERK axis
title MiR-532-5p suppresses renal cancer cell proliferation by disrupting the ETS1-mediated positive feedback loop with the KRAS-NAP1L1/P-ERK axis
title_full MiR-532-5p suppresses renal cancer cell proliferation by disrupting the ETS1-mediated positive feedback loop with the KRAS-NAP1L1/P-ERK axis
title_fullStr MiR-532-5p suppresses renal cancer cell proliferation by disrupting the ETS1-mediated positive feedback loop with the KRAS-NAP1L1/P-ERK axis
title_full_unstemmed MiR-532-5p suppresses renal cancer cell proliferation by disrupting the ETS1-mediated positive feedback loop with the KRAS-NAP1L1/P-ERK axis
title_short MiR-532-5p suppresses renal cancer cell proliferation by disrupting the ETS1-mediated positive feedback loop with the KRAS-NAP1L1/P-ERK axis
title_sort mir-532-5p suppresses renal cancer cell proliferation by disrupting the ets1-mediated positive feedback loop with the kras-nap1l1/p-erk axis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6162242/
https://www.ncbi.nlm.nih.gov/pubmed/30082686
http://dx.doi.org/10.1038/s41416-018-0196-5
work_keys_str_mv AT zhaiwei mir5325psuppressesrenalcancercellproliferationbydisruptingtheets1mediatedpositivefeedbackloopwiththekrasnap1l1perkaxis
AT majunjie mir5325psuppressesrenalcancercellproliferationbydisruptingtheets1mediatedpositivefeedbackloopwiththekrasnap1l1perkaxis
AT zhurujian mir5325psuppressesrenalcancercellproliferationbydisruptingtheets1mediatedpositivefeedbackloopwiththekrasnap1l1perkaxis
AT xuchen mir5325psuppressesrenalcancercellproliferationbydisruptingtheets1mediatedpositivefeedbackloopwiththekrasnap1l1perkaxis
AT zhangjin mir5325psuppressesrenalcancercellproliferationbydisruptingtheets1mediatedpositivefeedbackloopwiththekrasnap1l1perkaxis
AT chenyonghui mir5325psuppressesrenalcancercellproliferationbydisruptingtheets1mediatedpositivefeedbackloopwiththekrasnap1l1perkaxis
AT chenzhiguo mir5325psuppressesrenalcancercellproliferationbydisruptingtheets1mediatedpositivefeedbackloopwiththekrasnap1l1perkaxis
AT gongdongkui mir5325psuppressesrenalcancercellproliferationbydisruptingtheets1mediatedpositivefeedbackloopwiththekrasnap1l1perkaxis
AT zhengjiayi mir5325psuppressesrenalcancercellproliferationbydisruptingtheets1mediatedpositivefeedbackloopwiththekrasnap1l1perkaxis
AT chenchen mir5325psuppressesrenalcancercellproliferationbydisruptingtheets1mediatedpositivefeedbackloopwiththekrasnap1l1perkaxis
AT lisaiyang mir5325psuppressesrenalcancercellproliferationbydisruptingtheets1mediatedpositivefeedbackloopwiththekrasnap1l1perkaxis
AT libutang mir5325psuppressesrenalcancercellproliferationbydisruptingtheets1mediatedpositivefeedbackloopwiththekrasnap1l1perkaxis
AT huangyiran mir5325psuppressesrenalcancercellproliferationbydisruptingtheets1mediatedpositivefeedbackloopwiththekrasnap1l1perkaxis
AT xuewei mir5325psuppressesrenalcancercellproliferationbydisruptingtheets1mediatedpositivefeedbackloopwiththekrasnap1l1perkaxis
AT zhengjunhua mir5325psuppressesrenalcancercellproliferationbydisruptingtheets1mediatedpositivefeedbackloopwiththekrasnap1l1perkaxis