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Distant coupling between RNA editing and alternative splicing of the osmosensitive cation channel Tmem63b

Post-transcriptional modifications of pre-mRNAs expand the diversity of proteomes in higher eukaryotes. In the brain, these modifications diversify the functional output of many critical neuronal signal molecules. In this study, we identified a brain-specific A-to-I RNA editing that changed glutamin...

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Autores principales: Wu, Dan, Zang, Yan-Yu, Shi, Yong-Yun, Ye, Chang, Cai, Wen-Min, Tang, Xiao-Hui, Zhao, Liyun, Liu, Yong, Gan, Zhenji, Chen, Gui-quan, Xu, Yun, Yang, Jian-Jun, Shi, Yun Stone
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2021
Materias:
RNA
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7939439/
https://www.ncbi.nlm.nih.gov/pubmed/33100268
http://dx.doi.org/10.1074/jbc.RA120.016049
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author Wu, Dan
Zang, Yan-Yu
Shi, Yong-Yun
Ye, Chang
Cai, Wen-Min
Tang, Xiao-Hui
Zhao, Liyun
Liu, Yong
Gan, Zhenji
Chen, Gui-quan
Xu, Yun
Yang, Jian-Jun
Shi, Yun Stone
author_facet Wu, Dan
Zang, Yan-Yu
Shi, Yong-Yun
Ye, Chang
Cai, Wen-Min
Tang, Xiao-Hui
Zhao, Liyun
Liu, Yong
Gan, Zhenji
Chen, Gui-quan
Xu, Yun
Yang, Jian-Jun
Shi, Yun Stone
author_sort Wu, Dan
collection PubMed
description Post-transcriptional modifications of pre-mRNAs expand the diversity of proteomes in higher eukaryotes. In the brain, these modifications diversify the functional output of many critical neuronal signal molecules. In this study, we identified a brain-specific A-to-I RNA editing that changed glutamine to arginine (Q/R) at exon 20 and an alternative splicing of exon 4 in Tmem63b, which encodes a ubiquitously expressed osmosensitive cation channel. The channel isoforms lacking exon 4 occurred in ∼80% of Tmem63b mRNAs in the brain but were not detected in other tissues, suggesting a brain-specific splicing. We found that the Q/R editing was catalyzed by Adar2 (Adarb1) and required an editing site complementary sequence located in the proximal 5′ end of intron 20. Moreover, the Q/R editing was almost exclusively identified in the splicing isoform lacking exon 4, indicating a coupling between the editing and the splicing. Elimination of the Q/R editing in brain-specific Adar2 knockout mice did not affect the splicing efficiency of exon 4. Furthermore, transfection with the splicing isoform containing exon 4 suppressed the Q/R editing in primary cultured cerebellar granule neurons. Thus, our study revealed a coupling between an RNA editing and a distant alternative splicing in the Tmem63b pre-mRNA, in which the splicing plays a dominant role. Finally, physiological analysis showed that the splicing and the editing coordinately regulate Ca(2+) permeability and osmosensitivity of channel proteins, which may contribute to their functions in the brain.
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spelling pubmed-79394392021-06-08 Distant coupling between RNA editing and alternative splicing of the osmosensitive cation channel Tmem63b Wu, Dan Zang, Yan-Yu Shi, Yong-Yun Ye, Chang Cai, Wen-Min Tang, Xiao-Hui Zhao, Liyun Liu, Yong Gan, Zhenji Chen, Gui-quan Xu, Yun Yang, Jian-Jun Shi, Yun Stone J Biol Chem RNA Post-transcriptional modifications of pre-mRNAs expand the diversity of proteomes in higher eukaryotes. In the brain, these modifications diversify the functional output of many critical neuronal signal molecules. In this study, we identified a brain-specific A-to-I RNA editing that changed glutamine to arginine (Q/R) at exon 20 and an alternative splicing of exon 4 in Tmem63b, which encodes a ubiquitously expressed osmosensitive cation channel. The channel isoforms lacking exon 4 occurred in ∼80% of Tmem63b mRNAs in the brain but were not detected in other tissues, suggesting a brain-specific splicing. We found that the Q/R editing was catalyzed by Adar2 (Adarb1) and required an editing site complementary sequence located in the proximal 5′ end of intron 20. Moreover, the Q/R editing was almost exclusively identified in the splicing isoform lacking exon 4, indicating a coupling between the editing and the splicing. Elimination of the Q/R editing in brain-specific Adar2 knockout mice did not affect the splicing efficiency of exon 4. Furthermore, transfection with the splicing isoform containing exon 4 suppressed the Q/R editing in primary cultured cerebellar granule neurons. Thus, our study revealed a coupling between an RNA editing and a distant alternative splicing in the Tmem63b pre-mRNA, in which the splicing plays a dominant role. Finally, physiological analysis showed that the splicing and the editing coordinately regulate Ca(2+) permeability and osmosensitivity of channel proteins, which may contribute to their functions in the brain. American Society for Biochemistry and Molecular Biology 2021-01-13 /pmc/articles/PMC7939439/ /pubmed/33100268 http://dx.doi.org/10.1074/jbc.RA120.016049 Text en © 2020 © 2020 Wu et al. https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle RNA
Wu, Dan
Zang, Yan-Yu
Shi, Yong-Yun
Ye, Chang
Cai, Wen-Min
Tang, Xiao-Hui
Zhao, Liyun
Liu, Yong
Gan, Zhenji
Chen, Gui-quan
Xu, Yun
Yang, Jian-Jun
Shi, Yun Stone
Distant coupling between RNA editing and alternative splicing of the osmosensitive cation channel Tmem63b
title Distant coupling between RNA editing and alternative splicing of the osmosensitive cation channel Tmem63b
title_full Distant coupling between RNA editing and alternative splicing of the osmosensitive cation channel Tmem63b
title_fullStr Distant coupling between RNA editing and alternative splicing of the osmosensitive cation channel Tmem63b
title_full_unstemmed Distant coupling between RNA editing and alternative splicing of the osmosensitive cation channel Tmem63b
title_short Distant coupling between RNA editing and alternative splicing of the osmosensitive cation channel Tmem63b
title_sort distant coupling between rna editing and alternative splicing of the osmosensitive cation channel tmem63b
topic RNA
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7939439/
https://www.ncbi.nlm.nih.gov/pubmed/33100268
http://dx.doi.org/10.1074/jbc.RA120.016049
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