Skip to main content
Top
Published in: Inflammation 3/2021

01-06-2021 | Ulcerative Colitis | Original Article

Long Non-coding RNA MEG3 Alleviated Ulcerative Colitis Through Upregulating miR-98-5p-Sponged IL-10

Authors: Yan Wang, Nan Wang, Lianlian Cui, Yan Li, Zhenfeng Cao, Xing Wu, Qianhan Wang, Bo Zhang, Caixia Ma, Yanbo Cheng

Published in: Inflammation | Issue 3/2021

Login to get access

Abstract

Ulcerative colitis (UC) is a refractory chronic colitis disease with the particularly complex cause. Recently, long noncoding RNAs (lncRNAs) have been reported to be related to the development of UC. LncRNA MEG3 has been proved to play an anti-inflammatory role in a variety of inflammatory diseases, which share similar pathogenesis with UC, indicating the potential involvement of lncRNA MEG3 in UC. This study aims to investigate the functional role and underlying mechanism of lncRNA MEG3 in UC. Gradient concentration of H2O2 (0, 20, 50, 100, and 200 μM) was used to induce Caco-2 damage models in vitro. Cell viability was detected by cell counting kit-8 (CCK-8) assay. LncRNA MEG3, miR-98-5p, and IL-10 levels in H2O2−treated Caco-2 cells were assessed by performing real-time quantitative polymerase chain reaction (RT-qPCR). Moreover, the binding relationship between lncRNA MEG3 and miR-98-5p, as well as the binding relationship between miR-98-5p and IL-10, was validated using dual-luciferase reporter assay. 2, 4, 6-Trinitrobenzenesulfonic acid solution (TNBS) was applied to induce ulcerative colitis in young rats. The body weight, disease activity index (DAI), length and weight of the colons, pathological scores of UC rats, reactive oxygen species (ROS), and inflammatory cytokines were determined to evaluate the effects of lncRNA MEG3 on the progression of UC. Besides, hematoxylin-eosin (HE) staining was exploited to observe histological changes of UC rat colons. In addition, western blotting analysis was also performed to evaluate the apoptosis and pyroptosis-related protein levels. Moreover, lncRNA MEG3, miR-98-5p, and IL-10 levels in UC rat colons were further assessed by RT-qPCR. Meanwhile, IL-10 expression was determined using immunohistochemistry. LncRNA MEG3 and IL-10 levels were distinctly decreased while miR-98-5p was increased in Caco-2 damage models and UC rats. Bioinformatics analysis predicted the binding sites of lncRNA MEG3 to miR-98-5p and miR-98-5p to IL-10. Besides, dual-luciferase reporter assay validated the negative correlation between lncRNA MEG3 and miR-98-5p, miR-98-5p, and IL-10. Overexpressed lncRNA MEG3 reduced. DAI scores and colon weight/length ratio improved UC ulceration. In addition, upregulation of lncRNA MEG3 relieved oxidative stress, inflammatory response, apoptosis, and pyroptosis of UC rat colons. LncRNA MEG3 overexpression alleviates the serve ulceration of UC rat colons by upregulating IL-10 expression via sponging miR-98-5p. To sum up, this study reveals the protective role of lncRNA MEG3 in the development of UC and may provide potential therapeutic targets for UC.
Literature
1.
go back to reference Gajendran, M., P. Loganathan, G. Jimenez, A.P. Catinella, N. Ng, C. Umapathy, N. Ziade, and J.G. Hashash. 2019. A comprehensive review and update on ulcerative colitis. Disease-a-month: DM 65: 100851.CrossRef Gajendran, M., P. Loganathan, G. Jimenez, A.P. Catinella, N. Ng, C. Umapathy, N. Ziade, and J.G. Hashash. 2019. A comprehensive review and update on ulcerative colitis. Disease-a-month: DM 65: 100851.CrossRef
2.
go back to reference Gravina, A.G., M. Dallio, M. Masarone, V. Rosato, A. Aglitti, M. Persico, C. Loguercio, and A. Federico. 2018. Vascular endothelial dysfunction in inflammatory bowel diseases: pharmacological and nonpharmacological targets. Oxidative Medicine and Cellular Longevity 2018: 2568569.CrossRef Gravina, A.G., M. Dallio, M. Masarone, V. Rosato, A. Aglitti, M. Persico, C. Loguercio, and A. Federico. 2018. Vascular endothelial dysfunction in inflammatory bowel diseases: pharmacological and nonpharmacological targets. Oxidative Medicine and Cellular Longevity 2018: 2568569.CrossRef
3.
go back to reference John, E.S., K. Katz, M. Saxena, S. Chokhavatia, and S. Katz. 2016. Management of Inflammatory Bowel Disease in the elderly. Current Treatment Options in Gastroenterology 14: 285–304.CrossRef John, E.S., K. Katz, M. Saxena, S. Chokhavatia, and S. Katz. 2016. Management of Inflammatory Bowel Disease in the elderly. Current Treatment Options in Gastroenterology 14: 285–304.CrossRef
4.
go back to reference Shivaji, U.N., O.M. Nardone, R. Cannatelli, S.C. Smith, S. Ghosh, and M. Iacucci. 2020. Small molecule oral targeted therapies in ulcerative colitis. The Lancet. Gastroenterology & Hepatology 5: 850–861.CrossRef Shivaji, U.N., O.M. Nardone, R. Cannatelli, S.C. Smith, S. Ghosh, and M. Iacucci. 2020. Small molecule oral targeted therapies in ulcerative colitis. The Lancet. Gastroenterology & Hepatology 5: 850–861.CrossRef
5.
go back to reference Ahluwalia, B., L. Moraes, M.K. Magnusson, and L. Öhman. 2018. Immunopathogenesis of inflammatory bowel disease and mechanisms of biological therapies. Scandinavian Journal of Gastroenterology 53: 379–389.CrossRef Ahluwalia, B., L. Moraes, M.K. Magnusson, and L. Öhman. 2018. Immunopathogenesis of inflammatory bowel disease and mechanisms of biological therapies. Scandinavian Journal of Gastroenterology 53: 379–389.CrossRef
6.
go back to reference Hanić, M., I. Trbojević-Akmačić, and G. Lauc. 2019. Inflammatory bowel disease - glycomics perspective. Biochimica et Biophysica Acta, General Subjects 1863: 1595–1601.CrossRef Hanić, M., I. Trbojević-Akmačić, and G. Lauc. 2019. Inflammatory bowel disease - glycomics perspective. Biochimica et Biophysica Acta, General Subjects 1863: 1595–1601.CrossRef
7.
go back to reference Saber, S., R.M. Khalil, W.S. Abdo, D. Nassif, and E. El-Ahwany. 2019. Olmesartan ameliorates chemically-induced ulcerative colitis in rats via modulating NFκB and Nrf-2/HO-1 signaling crosstalk. Toxicology and Applied Pharmacology 364: 120–132.CrossRef Saber, S., R.M. Khalil, W.S. Abdo, D. Nassif, and E. El-Ahwany. 2019. Olmesartan ameliorates chemically-induced ulcerative colitis in rats via modulating NFκB and Nrf-2/HO-1 signaling crosstalk. Toxicology and Applied Pharmacology 364: 120–132.CrossRef
8.
go back to reference Chao, L., Z. Li, J. Zhou, W. Chen, Y. Li, W. Lv, A. Guo, Q. Qu, and S. Guo. 2020. Shen-Ling-Bai-Zhu-San improves dextran sodium sulfate-induced colitis by inhibiting caspase-1/caspase-11-mediated pyroptosis. Frontiers in Pharmacology 11: 814.CrossRef Chao, L., Z. Li, J. Zhou, W. Chen, Y. Li, W. Lv, A. Guo, Q. Qu, and S. Guo. 2020. Shen-Ling-Bai-Zhu-San improves dextran sodium sulfate-induced colitis by inhibiting caspase-1/caspase-11-mediated pyroptosis. Frontiers in Pharmacology 11: 814.CrossRef
9.
go back to reference McKenzie, B.A., V.M. Dixit, and C. Power. 2020. Fiery cell death: pyroptosis in the central nervous system. Trends in Neurosciences 43: 55–73.CrossRef McKenzie, B.A., V.M. Dixit, and C. Power. 2020. Fiery cell death: pyroptosis in the central nervous system. Trends in Neurosciences 43: 55–73.CrossRef
10.
go back to reference Paul, G., V. Khare, and C. Gasche. 2012. Inflamed gut mucosa: Downstream of interleukin-10. European Journal of Clinical Investigation 42: 95–109.CrossRef Paul, G., V. Khare, and C. Gasche. 2012. Inflamed gut mucosa: Downstream of interleukin-10. European Journal of Clinical Investigation 42: 95–109.CrossRef
11.
go back to reference Fang, D., and J. Zhu. 2020. Molecular switches for regulating the differentiation of inflammatory and IL-10-producing anti-inflammatory T-helper cells. Cellular and Molecular Life Sciences: CMLS 77: 289–303.CrossRef Fang, D., and J. Zhu. 2020. Molecular switches for regulating the differentiation of inflammatory and IL-10-producing anti-inflammatory T-helper cells. Cellular and Molecular Life Sciences: CMLS 77: 289–303.CrossRef
12.
go back to reference Ghizoni, J.S., R. Nichele, M.T. de Oliveira, S. Pamato, and J.R. Pereira. 2020. The utilization of saliva as an early diagnostic tool for oral cancer: microRNA as a biomarker. Clinical & Translational Oncology: Official Publication of the Federation of Spanish Oncology Societies and of the National Cancer Institute of Mexico 22: 804–812.CrossRef Ghizoni, J.S., R. Nichele, M.T. de Oliveira, S. Pamato, and J.R. Pereira. 2020. The utilization of saliva as an early diagnostic tool for oral cancer: microRNA as a biomarker. Clinical & Translational Oncology: Official Publication of the Federation of Spanish Oncology Societies and of the National Cancer Institute of Mexico 22: 804–812.CrossRef
13.
go back to reference Soroosh, A., M. Koutsioumpa, C. Pothoulakis, and D. Iliopoulos. 2018. Functional role and therapeutic targeting of microRNAs in inflammatory bowel disease. American Journal of Physiology. Gastrointestinal and Liver Physiology 314: G256–256G262.CrossRef Soroosh, A., M. Koutsioumpa, C. Pothoulakis, and D. Iliopoulos. 2018. Functional role and therapeutic targeting of microRNAs in inflammatory bowel disease. American Journal of Physiology. Gastrointestinal and Liver Physiology 314: G256–256G262.CrossRef
14.
go back to reference Naghdalipour, M., N. Moradi, R. Fadaei, S. Rezghi Barez, S. Sayyahfar, M. Mokhtare, T.K. Fard, S. Fallah, and A. Esteghamati. 2020. Alteration of miR-21, miR-433 and miR-590 tissue expression related to the TGF-β signaling pathway in ulcerative colitis patients. Archives of Physiology and Biochemistry 15: 1–5.CrossRef Naghdalipour, M., N. Moradi, R. Fadaei, S. Rezghi Barez, S. Sayyahfar, M. Mokhtare, T.K. Fard, S. Fallah, and A. Esteghamati. 2020. Alteration of miR-21, miR-433 and miR-590 tissue expression related to the TGF-β signaling pathway in ulcerative colitis patients. Archives of Physiology and Biochemistry 15: 1–5.CrossRef
15.
go back to reference Peng, Y., Q. Wang, W. Yang, Q. Yang, Y. Pei, and W. Zhang. 2020. MiR-98-5p expression inhibits polarization of macrophages to an M2 phenotype by targeting Trib1 in inflammatory bowel disease. Acta Biochimica Polonica 67: 157–163.PubMed Peng, Y., Q. Wang, W. Yang, Q. Yang, Y. Pei, and W. Zhang. 2020. MiR-98-5p expression inhibits polarization of macrophages to an M2 phenotype by targeting Trib1 in inflammatory bowel disease. Acta Biochimica Polonica 67: 157–163.PubMed
16.
go back to reference Takuse, Y., M. Watanabe, N. Inoue, R. Ozaki, H. Ohtsu, M. Saeki, Y. Katsumata, Y. Hidaka, and Y. Iwatani. 2017. Association of IL-10-regulating MicroRNAs in peripheral blood mononuclear cells with the pathogenesis of autoimmune thyroid disease. Immunological Investigations 46: 590–602.CrossRef Takuse, Y., M. Watanabe, N. Inoue, R. Ozaki, H. Ohtsu, M. Saeki, Y. Katsumata, Y. Hidaka, and Y. Iwatani. 2017. Association of IL-10-regulating MicroRNAs in peripheral blood mononuclear cells with the pathogenesis of autoimmune thyroid disease. Immunological Investigations 46: 590–602.CrossRef
17.
go back to reference Gabriel, A.F., M.C. Costa, and F.J. Enguita. 2020. Interactions among regulatory non-coding RNAs involved in cardiovascular diseases. Advances in Experimental Medicine and Biology 1229: 79–104.CrossRef Gabriel, A.F., M.C. Costa, and F.J. Enguita. 2020. Interactions among regulatory non-coding RNAs involved in cardiovascular diseases. Advances in Experimental Medicine and Biology 1229: 79–104.CrossRef
18.
go back to reference Shaker, O.G., M.A. Ali, T.I. Ahmed, O.M. Zaki, D.Y. Ali, E.A. Hassan, N.F. Hemeda, and M.N. AbdelHafez. 2019. Association between LINC00657 and miR-106a serum expression levels and susceptibility to colorectal cancer, adenomatous polyposis, and ulcerative colitis in Egyptian population. IUBMB Life 71: 1322–1335.CrossRef Shaker, O.G., M.A. Ali, T.I. Ahmed, O.M. Zaki, D.Y. Ali, E.A. Hassan, N.F. Hemeda, and M.N. AbdelHafez. 2019. Association between LINC00657 and miR-106a serum expression levels and susceptibility to colorectal cancer, adenomatous polyposis, and ulcerative colitis in Egyptian population. IUBMB Life 71: 1322–1335.CrossRef
19.
go back to reference Qiao, C., L. Yang, J. Wan, X. Liu, C. Pang, W. You, and G. Zhao. 2019. Long noncoding RNA ANRIL contributes to the development of ulcerative colitis by miR-323b-5p/TLR4/MyD88/NF-κB pathway. Biochemical and Biophysical Research Communications 508: 217–224.CrossRef Qiao, C., L. Yang, J. Wan, X. Liu, C. Pang, W. You, and G. Zhao. 2019. Long noncoding RNA ANRIL contributes to the development of ulcerative colitis by miR-323b-5p/TLR4/MyD88/NF-κB pathway. Biochemical and Biophysical Research Communications 508: 217–224.CrossRef
20.
go back to reference Li, Y., S. Zhang, C. Zhang, and M. Wang. 2020. LncRNA MEG3 inhibits the inflammatory response of ankylosing spondylitis by targeting miR-146a. Molecular and Cellular Biochemistry 466: 17–24.CrossRef Li, Y., S. Zhang, C. Zhang, and M. Wang. 2020. LncRNA MEG3 inhibits the inflammatory response of ankylosing spondylitis by targeting miR-146a. Molecular and Cellular Biochemistry 466: 17–24.CrossRef
21.
go back to reference Li, G., Y. Liu, F. Meng, Z. Xia, X. Wu, Y. Fang, C. Zhang, Y. Zhang, and D. Liu. 2019. LncRNA MEG3 inhibits rheumatoid arthritis through miR-141 and inactivation of AKT/mTOR signalling pathway. Journal of Cellular and Molecular Medicine 23: 7116–7120.CrossRef Li, G., Y. Liu, F. Meng, Z. Xia, X. Wu, Y. Fang, C. Zhang, Y. Zhang, and D. Liu. 2019. LncRNA MEG3 inhibits rheumatoid arthritis through miR-141 and inactivation of AKT/mTOR signalling pathway. Journal of Cellular and Molecular Medicine 23: 7116–7120.CrossRef
22.
go back to reference Xu, B., Y.L. Li, M. Xu, C.C. Yu, M.Q. Lian, Z.Y. Tang, C.X. Li, and Y. Lin. 2017. Geniposide ameliorates TNBS-induced experimental colitis in rats via reducing inflammatory cytokine release and restoring impaired intestinal barrier function. Acta Pharmacologica Sinica 38: 688–698.CrossRef Xu, B., Y.L. Li, M. Xu, C.C. Yu, M.Q. Lian, Z.Y. Tang, C.X. Li, and Y. Lin. 2017. Geniposide ameliorates TNBS-induced experimental colitis in rats via reducing inflammatory cytokine release and restoring impaired intestinal barrier function. Acta Pharmacologica Sinica 38: 688–698.CrossRef
23.
go back to reference Livak, K.J., and T.D. Schmittgen. 2001. Analysis of relative gene expression data using real-time quantitative PCR and the 2(-Delta Delta C(T)) method. Methods: a Companion to Methods in Enzymology 25: 402–408.CrossRef Livak, K.J., and T.D. Schmittgen. 2001. Analysis of relative gene expression data using real-time quantitative PCR and the 2(-Delta Delta C(T)) method. Methods: a Companion to Methods in Enzymology 25: 402–408.CrossRef
24.
go back to reference Zhao, K., J.Y. Tan, Q.D. Mao, K.Y. Ren, B.G. He, C.P. Zhang, and L.Z. Wei. 2019. Overexpression of long non-coding RNA TUG1 alleviates TNF-α-induced inflammatory injury in interstitial cells of Cajal. European Review for Medical and Pharmacological Sciences 23: 312–320.PubMed Zhao, K., J.Y. Tan, Q.D. Mao, K.Y. Ren, B.G. He, C.P. Zhang, and L.Z. Wei. 2019. Overexpression of long non-coding RNA TUG1 alleviates TNF-α-induced inflammatory injury in interstitial cells of Cajal. European Review for Medical and Pharmacological Sciences 23: 312–320.PubMed
25.
go back to reference De Trez, C., B. Stijlemans, V. Bockstal, J. Cnops, H. Korf, J. Van Snick, G. Caljon, E. Muraille, I.R. Humphreys, L. Boon, J.A. Van Ginderachter, and S. Magez. 2020. A critical blimp-1-dependent IL-10 regulatory pathway in T cells protects from a lethal pro-inflammatory cytokine storm during acute experimental Trypanosoma brucei infection. Frontiers in Immunology 11: 1085.CrossRef De Trez, C., B. Stijlemans, V. Bockstal, J. Cnops, H. Korf, J. Van Snick, G. Caljon, E. Muraille, I.R. Humphreys, L. Boon, J.A. Van Ginderachter, and S. Magez. 2020. A critical blimp-1-dependent IL-10 regulatory pathway in T cells protects from a lethal pro-inflammatory cytokine storm during acute experimental Trypanosoma brucei infection. Frontiers in Immunology 11: 1085.CrossRef
26.
go back to reference Wang, Q., J. Wu, Y. Zeng, K. Chen, C. Wang, S. Yang, N. Sun, H. Chen, K. Duan, and G. Zeng. 2020. Pyroptosis: A pro-inflammatory type of cell death in cardiovascular disease. Clinica Chimica Acta; International Journal of Clinical Chemistry 510: 62–72.CrossRef Wang, Q., J. Wu, Y. Zeng, K. Chen, C. Wang, S. Yang, N. Sun, H. Chen, K. Duan, and G. Zeng. 2020. Pyroptosis: A pro-inflammatory type of cell death in cardiovascular disease. Clinica Chimica Acta; International Journal of Clinical Chemistry 510: 6272.CrossRef
Metadata
Title
Long Non-coding RNA MEG3 Alleviated Ulcerative Colitis Through Upregulating miR-98-5p-Sponged IL-10
Authors
Yan Wang
Nan Wang
Lianlian Cui
Yan Li
Zhenfeng Cao
Xing Wu
Qianhan Wang
Bo Zhang
Caixia Ma
Yanbo Cheng
Publication date
01-06-2021
Publisher
Springer US
Published in
Inflammation / Issue 3/2021
Print ISSN: 0360-3997
Electronic ISSN: 1573-2576
DOI
https://doi.org/10.1007/s10753-020-01400-z

Other articles of this Issue 3/2021

Inflammation 3/2021 Go to the issue
Live Webinar | 27-06-2024 | 18:00 (CEST)

Keynote webinar | Spotlight on medication adherence

Live: Thursday 27th June 2024, 18:00-19:30 (CEST)

WHO estimates that half of all patients worldwide are non-adherent to their prescribed medication. The consequences of poor adherence can be catastrophic, on both the individual and population level.

Join our expert panel to discover why you need to understand the drivers of non-adherence in your patients, and how you can optimize medication adherence in your clinics to drastically improve patient outcomes.

Prof. Kevin Dolgin
Prof. Florian Limbourg
Prof. Anoop Chauhan
Developed by: Springer Medicine
Obesity Clinical Trial Summary

At a glance: The STEP trials

A round-up of the STEP phase 3 clinical trials evaluating semaglutide for weight loss in people with overweight or obesity.

Developed by: Springer Medicine