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The RNA m(5)C Methylase NSUN2 Modulates Corneal Epithelial Wound Healing

PURPOSE: The emerging epitranscriptomics offers insights into the physiopathological roles of various RNA modifications. The RNA methylase NOP2/Sun domain family member 2 (NSUN2) catalyzes 5-methylcytosine (m(5)C) modification of mRNAs. However, the role of NSUN2 in corneal epithelial wound healing...

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Autores principales: Luo, Guangying, Xu, Weiwei, Chen, Xiaoyan, Xu, Wenji, Yang, Shuai, Wang, Jiao, Lin, Yong, Reinach, Peter S., Yan, Dongsheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Association for Research in Vision and Ophthalmology 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9983701/
https://www.ncbi.nlm.nih.gov/pubmed/36862118
http://dx.doi.org/10.1167/iovs.64.3.5
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author Luo, Guangying
Xu, Weiwei
Chen, Xiaoyan
Xu, Wenji
Yang, Shuai
Wang, Jiao
Lin, Yong
Reinach, Peter S.
Yan, Dongsheng
author_facet Luo, Guangying
Xu, Weiwei
Chen, Xiaoyan
Xu, Wenji
Yang, Shuai
Wang, Jiao
Lin, Yong
Reinach, Peter S.
Yan, Dongsheng
author_sort Luo, Guangying
collection PubMed
description PURPOSE: The emerging epitranscriptomics offers insights into the physiopathological roles of various RNA modifications. The RNA methylase NOP2/Sun domain family member 2 (NSUN2) catalyzes 5-methylcytosine (m(5)C) modification of mRNAs. However, the role of NSUN2 in corneal epithelial wound healing (CEWH) remains unknown. Here we describe the functional mechanisms of NSUN2 in mediating CEWH. METHODS: RT-qPCR, Western blot, dot blot, and ELISA were used to determine the NSUN2 expression and overall RNA m(5)C level during CEWH. NSUN2 silencing or overexpression was performed to explore its involvement in CEWH both in vivo and in vitro. Multi-omics was integrated to reveal the downstream target of NSUN2. MeRIP-qPCR, RIP-qPCR, and luciferase assay, as well as in vivo and in vitro functional assays, clarified the molecular mechanism of NSUN2 in CEWH. RESULTS: The NSUN2 expression and RNA m(5)C level increased significantly during CEWH. NSUN2 knockdown significantly delayed CEWH in vivo and inhibited human corneal epithelial cells (HCEC) proliferation and migration in vitro, whereas NSUN2 overexpression prominently enhanced HCEC proliferation and migration. Mechanistically, we found that NSUN2 increased ubiquitin-like containing PHD and RING finger domains 1 (UHRF1) translation through the binding of RNA m(5)C reader Aly/REF export factor. Accordingly, UHRF1 knockdown significantly delayed CEWH in vivo and inhibited HCEC proliferation and migration in vitro. Furthermore, UHRF1 overexpression effectively rescued the inhibitory effect of NSUN2 silencing on HCEC proliferation and migration. CONCLUSIONS: NSUN2-mediated m(5)C modification of UHRF1 mRNA modulates CEWH. This finding highlights the critical importance of this novel epitranscriptomic mechanism in control of CEWH.
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spelling pubmed-99837012023-03-04 The RNA m(5)C Methylase NSUN2 Modulates Corneal Epithelial Wound Healing Luo, Guangying Xu, Weiwei Chen, Xiaoyan Xu, Wenji Yang, Shuai Wang, Jiao Lin, Yong Reinach, Peter S. Yan, Dongsheng Invest Ophthalmol Vis Sci Biochemistry and Molecular Biology PURPOSE: The emerging epitranscriptomics offers insights into the physiopathological roles of various RNA modifications. The RNA methylase NOP2/Sun domain family member 2 (NSUN2) catalyzes 5-methylcytosine (m(5)C) modification of mRNAs. However, the role of NSUN2 in corneal epithelial wound healing (CEWH) remains unknown. Here we describe the functional mechanisms of NSUN2 in mediating CEWH. METHODS: RT-qPCR, Western blot, dot blot, and ELISA were used to determine the NSUN2 expression and overall RNA m(5)C level during CEWH. NSUN2 silencing or overexpression was performed to explore its involvement in CEWH both in vivo and in vitro. Multi-omics was integrated to reveal the downstream target of NSUN2. MeRIP-qPCR, RIP-qPCR, and luciferase assay, as well as in vivo and in vitro functional assays, clarified the molecular mechanism of NSUN2 in CEWH. RESULTS: The NSUN2 expression and RNA m(5)C level increased significantly during CEWH. NSUN2 knockdown significantly delayed CEWH in vivo and inhibited human corneal epithelial cells (HCEC) proliferation and migration in vitro, whereas NSUN2 overexpression prominently enhanced HCEC proliferation and migration. Mechanistically, we found that NSUN2 increased ubiquitin-like containing PHD and RING finger domains 1 (UHRF1) translation through the binding of RNA m(5)C reader Aly/REF export factor. Accordingly, UHRF1 knockdown significantly delayed CEWH in vivo and inhibited HCEC proliferation and migration in vitro. Furthermore, UHRF1 overexpression effectively rescued the inhibitory effect of NSUN2 silencing on HCEC proliferation and migration. CONCLUSIONS: NSUN2-mediated m(5)C modification of UHRF1 mRNA modulates CEWH. This finding highlights the critical importance of this novel epitranscriptomic mechanism in control of CEWH. The Association for Research in Vision and Ophthalmology 2023-03-02 /pmc/articles/PMC9983701/ /pubmed/36862118 http://dx.doi.org/10.1167/iovs.64.3.5 Text en Copyright 2023 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.
spellingShingle Biochemistry and Molecular Biology
Luo, Guangying
Xu, Weiwei
Chen, Xiaoyan
Xu, Wenji
Yang, Shuai
Wang, Jiao
Lin, Yong
Reinach, Peter S.
Yan, Dongsheng
The RNA m(5)C Methylase NSUN2 Modulates Corneal Epithelial Wound Healing
title The RNA m(5)C Methylase NSUN2 Modulates Corneal Epithelial Wound Healing
title_full The RNA m(5)C Methylase NSUN2 Modulates Corneal Epithelial Wound Healing
title_fullStr The RNA m(5)C Methylase NSUN2 Modulates Corneal Epithelial Wound Healing
title_full_unstemmed The RNA m(5)C Methylase NSUN2 Modulates Corneal Epithelial Wound Healing
title_short The RNA m(5)C Methylase NSUN2 Modulates Corneal Epithelial Wound Healing
title_sort rna m(5)c methylase nsun2 modulates corneal epithelial wound healing
topic Biochemistry and Molecular Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9983701/
https://www.ncbi.nlm.nih.gov/pubmed/36862118
http://dx.doi.org/10.1167/iovs.64.3.5
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