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Osteogenic Differentiation of Renal Interstitial Fibroblasts Promoted by lncRNA MALAT1 May Partially Contribute to Randall’s Plaque Formation

BACKGROUND: The current belief is that Randall’s plaques (RP) constitute a nidus for the formation of idiopathic calcium oxalate stones, but the upstream events in RP formation remain unclear. The present study aimed to investigate whether RP formation shares similarities with biomineralization and...

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Autores principales: Zhu, Zewu, Huang, Fang, Xia, Weiping, Zeng, Huimin, Gao, Meng, Li, Yongchao, Zeng, Feng, He, Cheng, Chen, Jinbo, Chen, Zhiyong, Li, Yang, Cui, Yu, Chen, Hequn
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7829506/
https://www.ncbi.nlm.nih.gov/pubmed/33505960
http://dx.doi.org/10.3389/fcell.2020.596363
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author Zhu, Zewu
Huang, Fang
Xia, Weiping
Zeng, Huimin
Gao, Meng
Li, Yongchao
Zeng, Feng
He, Cheng
Chen, Jinbo
Chen, Zhiyong
Li, Yang
Cui, Yu
Chen, Hequn
author_facet Zhu, Zewu
Huang, Fang
Xia, Weiping
Zeng, Huimin
Gao, Meng
Li, Yongchao
Zeng, Feng
He, Cheng
Chen, Jinbo
Chen, Zhiyong
Li, Yang
Cui, Yu
Chen, Hequn
author_sort Zhu, Zewu
collection PubMed
description BACKGROUND: The current belief is that Randall’s plaques (RP) constitute a nidus for the formation of idiopathic calcium oxalate stones, but the upstream events in RP formation remain unclear. The present study aimed to investigate whether RP formation shares similarities with biomineralization and to illustrate the potential role played by the lncRNA MALAT1 in osteogenic differentiation of human renal interstitial fibroblasts (hRIFs). MATERIALS AND METHODS: Biomineralization and MALAT1 expression were assessed in RP, and hRIFs were isolated and induced under osteogenic conditions for further experiments. The transcription initiation and termination sites in MALAT1 were identified by 5′ and 3′ RACE. RNA immunoprecipitation assays and luciferase assays were used to validate the interactions among MALAT1, Runx2 and miRNAs. RESULTS: Upregulated expression of osteogenic markers and MALAT1 was observed in RP and hRIFs induced with osteogenic medium. Biomineralization in RP and calcium phosphate (CaP) deposits in induced hRIFs were further verified by electron microscopy. Furthermore, overexpression of MALAT1 promoted the osteogenic phenotype of hRIFs, while treatment with a miR-320a-5p mimic and knockdown of Runx2 significantly suppressed the osteogenic phenotype. Further analysis showed that MALAT1 functioned as a competing endogenous RNA to sponge miR-320a-5p, leading to upregulation of Runx2 and thus promoting osteogenic differentiation of hRIFs. CONCLUSION: Ectopic calcification and MALAT1 partially contributed to the formation of RP, in which MALAT1 might promote Runx2 expression to regulate osteogenic differentiation of hRIFs by sponging miRNA-320a-5p. The current study sheds new light on the lncRNA-directed mechanism of RP formation via a process driven by osteogenic-like cells.
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spelling pubmed-78295062021-01-26 Osteogenic Differentiation of Renal Interstitial Fibroblasts Promoted by lncRNA MALAT1 May Partially Contribute to Randall’s Plaque Formation Zhu, Zewu Huang, Fang Xia, Weiping Zeng, Huimin Gao, Meng Li, Yongchao Zeng, Feng He, Cheng Chen, Jinbo Chen, Zhiyong Li, Yang Cui, Yu Chen, Hequn Front Cell Dev Biol Cell and Developmental Biology BACKGROUND: The current belief is that Randall’s plaques (RP) constitute a nidus for the formation of idiopathic calcium oxalate stones, but the upstream events in RP formation remain unclear. The present study aimed to investigate whether RP formation shares similarities with biomineralization and to illustrate the potential role played by the lncRNA MALAT1 in osteogenic differentiation of human renal interstitial fibroblasts (hRIFs). MATERIALS AND METHODS: Biomineralization and MALAT1 expression were assessed in RP, and hRIFs were isolated and induced under osteogenic conditions for further experiments. The transcription initiation and termination sites in MALAT1 were identified by 5′ and 3′ RACE. RNA immunoprecipitation assays and luciferase assays were used to validate the interactions among MALAT1, Runx2 and miRNAs. RESULTS: Upregulated expression of osteogenic markers and MALAT1 was observed in RP and hRIFs induced with osteogenic medium. Biomineralization in RP and calcium phosphate (CaP) deposits in induced hRIFs were further verified by electron microscopy. Furthermore, overexpression of MALAT1 promoted the osteogenic phenotype of hRIFs, while treatment with a miR-320a-5p mimic and knockdown of Runx2 significantly suppressed the osteogenic phenotype. Further analysis showed that MALAT1 functioned as a competing endogenous RNA to sponge miR-320a-5p, leading to upregulation of Runx2 and thus promoting osteogenic differentiation of hRIFs. CONCLUSION: Ectopic calcification and MALAT1 partially contributed to the formation of RP, in which MALAT1 might promote Runx2 expression to regulate osteogenic differentiation of hRIFs by sponging miRNA-320a-5p. The current study sheds new light on the lncRNA-directed mechanism of RP formation via a process driven by osteogenic-like cells. Frontiers Media S.A. 2021-01-11 /pmc/articles/PMC7829506/ /pubmed/33505960 http://dx.doi.org/10.3389/fcell.2020.596363 Text en Copyright © 2021 Zhu, Huang, Xia, Zeng, Gao, Li, Zeng, He, Chen, Chen, Li, Cui and Chen. http://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
Zhu, Zewu
Huang, Fang
Xia, Weiping
Zeng, Huimin
Gao, Meng
Li, Yongchao
Zeng, Feng
He, Cheng
Chen, Jinbo
Chen, Zhiyong
Li, Yang
Cui, Yu
Chen, Hequn
Osteogenic Differentiation of Renal Interstitial Fibroblasts Promoted by lncRNA MALAT1 May Partially Contribute to Randall’s Plaque Formation
title Osteogenic Differentiation of Renal Interstitial Fibroblasts Promoted by lncRNA MALAT1 May Partially Contribute to Randall’s Plaque Formation
title_full Osteogenic Differentiation of Renal Interstitial Fibroblasts Promoted by lncRNA MALAT1 May Partially Contribute to Randall’s Plaque Formation
title_fullStr Osteogenic Differentiation of Renal Interstitial Fibroblasts Promoted by lncRNA MALAT1 May Partially Contribute to Randall’s Plaque Formation
title_full_unstemmed Osteogenic Differentiation of Renal Interstitial Fibroblasts Promoted by lncRNA MALAT1 May Partially Contribute to Randall’s Plaque Formation
title_short Osteogenic Differentiation of Renal Interstitial Fibroblasts Promoted by lncRNA MALAT1 May Partially Contribute to Randall’s Plaque Formation
title_sort osteogenic differentiation of renal interstitial fibroblasts promoted by lncrna malat1 may partially contribute to randall’s plaque formation
topic Cell and Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7829506/
https://www.ncbi.nlm.nih.gov/pubmed/33505960
http://dx.doi.org/10.3389/fcell.2020.596363
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