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CircRNF111 Protects Against Insulin Resistance and Lipid Deposition via Regulating miR-143-3p/IGF2R Axis in Metabolic Syndrome

Abnormal expression of circRNAs (circular RNAs), a subclass of non-coding RNAs, has been documented in numerous human diseases. Herein, we explored whether circRNAs act as ceRNAs (competing endogenous RNAs) to modulate the pathological process-insulin resistance, as well as dyslipidemia of MetS (Met...

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Autores principales: Lin, Xihua, Du, Ying, Lu, Weina, Gui, Weiwei, Sun, Shuiya, Zhu, Yiyi, Wang, Gangliang, Eserberg, Daniel Turunen, Zheng, Fenping, Zhou, Jiaqiang, Wu, Fang, Li, Hong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8415985/
https://www.ncbi.nlm.nih.gov/pubmed/34485272
http://dx.doi.org/10.3389/fcell.2021.663148
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author Lin, Xihua
Du, Ying
Lu, Weina
Gui, Weiwei
Sun, Shuiya
Zhu, Yiyi
Wang, Gangliang
Eserberg, Daniel Turunen
Zheng, Fenping
Zhou, Jiaqiang
Wu, Fang
Li, Hong
author_facet Lin, Xihua
Du, Ying
Lu, Weina
Gui, Weiwei
Sun, Shuiya
Zhu, Yiyi
Wang, Gangliang
Eserberg, Daniel Turunen
Zheng, Fenping
Zhou, Jiaqiang
Wu, Fang
Li, Hong
author_sort Lin, Xihua
collection PubMed
description Abnormal expression of circRNAs (circular RNAs), a subclass of non-coding RNAs, has been documented in numerous human diseases. Herein, we explored whether circRNAs act as ceRNAs (competing endogenous RNAs) to modulate the pathological process-insulin resistance, as well as dyslipidemia of MetS (Metabolic Syndrome). The profile of circRNAs in serume of MetS and control samples was characterized by circRNA deep sequencing. We identified circRNF111 as a key downregulated circRNA involved in MetS. The decreased expression of circRNF111 in the serum samples of MetS was directly linked to excessive insulin resistance and dyslipidemia. Loss-of-function experiments showed that circRNF111 knockdown inhibited the glucose uptake and the Akt signaling pathway, meanwhile increased the deposition of triglycerides in adipogenic differentiated hADSCs (human adipose-derived stem cells). Mechanistically, circRNF111 sponged miR-143-3p and functioned via targeting miR-143-3p along with its downstream target gene IGF2R. The role along with the mechanism of circRNF111 sponging miR-143-3p in MetS was also explored in obese mice triggered by high-fat die. Therefore, our data suggest a protective role of the novel circRNA-circRNF111 in MetS progression. CircRNF111 inhibition enhances insulin resistance and lipid deposition in MetS through regulating miR-143-3p-IGF2R cascade. This provides a promising therapeutic approach for MetS.
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spelling pubmed-84159852021-09-04 CircRNF111 Protects Against Insulin Resistance and Lipid Deposition via Regulating miR-143-3p/IGF2R Axis in Metabolic Syndrome Lin, Xihua Du, Ying Lu, Weina Gui, Weiwei Sun, Shuiya Zhu, Yiyi Wang, Gangliang Eserberg, Daniel Turunen Zheng, Fenping Zhou, Jiaqiang Wu, Fang Li, Hong Front Cell Dev Biol Cell and Developmental Biology Abnormal expression of circRNAs (circular RNAs), a subclass of non-coding RNAs, has been documented in numerous human diseases. Herein, we explored whether circRNAs act as ceRNAs (competing endogenous RNAs) to modulate the pathological process-insulin resistance, as well as dyslipidemia of MetS (Metabolic Syndrome). The profile of circRNAs in serume of MetS and control samples was characterized by circRNA deep sequencing. We identified circRNF111 as a key downregulated circRNA involved in MetS. The decreased expression of circRNF111 in the serum samples of MetS was directly linked to excessive insulin resistance and dyslipidemia. Loss-of-function experiments showed that circRNF111 knockdown inhibited the glucose uptake and the Akt signaling pathway, meanwhile increased the deposition of triglycerides in adipogenic differentiated hADSCs (human adipose-derived stem cells). Mechanistically, circRNF111 sponged miR-143-3p and functioned via targeting miR-143-3p along with its downstream target gene IGF2R. The role along with the mechanism of circRNF111 sponging miR-143-3p in MetS was also explored in obese mice triggered by high-fat die. Therefore, our data suggest a protective role of the novel circRNA-circRNF111 in MetS progression. CircRNF111 inhibition enhances insulin resistance and lipid deposition in MetS through regulating miR-143-3p-IGF2R cascade. This provides a promising therapeutic approach for MetS. Frontiers Media S.A. 2021-08-17 /pmc/articles/PMC8415985/ /pubmed/34485272 http://dx.doi.org/10.3389/fcell.2021.663148 Text en Copyright © 2021 Lin, Du, Lu, Gui, Sun, Zhu, Wang, Eserberg, Zheng, Zhou, Wu and Li. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cell and Developmental Biology
Lin, Xihua
Du, Ying
Lu, Weina
Gui, Weiwei
Sun, Shuiya
Zhu, Yiyi
Wang, Gangliang
Eserberg, Daniel Turunen
Zheng, Fenping
Zhou, Jiaqiang
Wu, Fang
Li, Hong
CircRNF111 Protects Against Insulin Resistance and Lipid Deposition via Regulating miR-143-3p/IGF2R Axis in Metabolic Syndrome
title CircRNF111 Protects Against Insulin Resistance and Lipid Deposition via Regulating miR-143-3p/IGF2R Axis in Metabolic Syndrome
title_full CircRNF111 Protects Against Insulin Resistance and Lipid Deposition via Regulating miR-143-3p/IGF2R Axis in Metabolic Syndrome
title_fullStr CircRNF111 Protects Against Insulin Resistance and Lipid Deposition via Regulating miR-143-3p/IGF2R Axis in Metabolic Syndrome
title_full_unstemmed CircRNF111 Protects Against Insulin Resistance and Lipid Deposition via Regulating miR-143-3p/IGF2R Axis in Metabolic Syndrome
title_short CircRNF111 Protects Against Insulin Resistance and Lipid Deposition via Regulating miR-143-3p/IGF2R Axis in Metabolic Syndrome
title_sort circrnf111 protects against insulin resistance and lipid deposition via regulating mir-143-3p/igf2r axis in metabolic syndrome
topic Cell and Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8415985/
https://www.ncbi.nlm.nih.gov/pubmed/34485272
http://dx.doi.org/10.3389/fcell.2021.663148
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