Long noncoding RNA PM maintains cerebellar synaptic integrity and Cbln1 activation via Pax6/Mll1-mediated H3K4me3.
Recent studies have shown that long noncoding RNAs (lncRNAs) are critical regulators in the central nervous system (CNS). However, their roles in the cerebellum are currently unclear. In this work, we identified the isoform 204 of lncRNA Gm2694 (designated as lncRNA-Promoting Methylation (lncRNA-PM)...
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2021-06-01
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Online Access: | https://doi.org/10.1371/journal.pbio.3001297 |
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doaj-c0b4fd67b07a47b5bf35c34e29dfc2dc2021-07-11T04:30:13ZengPublic Library of Science (PLoS)PLoS Biology1544-91731545-78852021-06-01196e300129710.1371/journal.pbio.3001297Long noncoding RNA PM maintains cerebellar synaptic integrity and Cbln1 activation via Pax6/Mll1-mediated H3K4me3.Yan JinBowen ZhangJunxia LuYingdong SongWei WangWei ZhangFanghong ShaoMeng GongMeiting WangXiaolin LiangShuqin LiZhi ZhangGe ShanXiangting WangRecent studies have shown that long noncoding RNAs (lncRNAs) are critical regulators in the central nervous system (CNS). However, their roles in the cerebellum are currently unclear. In this work, we identified the isoform 204 of lncRNA Gm2694 (designated as lncRNA-Promoting Methylation (lncRNA-PM)) is highly expressed in the cerebellum and derived from the antisense strand of the upstream region of Cerebellin-1 (Cbln1), a well-known critical cerebellar synaptic organizer. LncRNA-PM exhibits similar spatiotemporal expression pattern as Cbln1 in the postnatal mouse cerebellum and activates the transcription of Cbln1 through Pax6/Mll1-mediated H3K4me3. In mouse cerebellum, lncRNA-PM, Pax6/Mll1, and H3K4me3 are all associated with the regulatory regions of Cbln1. Knockdown of lncRNA-PM in cerebellum causes deficiencies in Cbln1 expression, cerebellar synaptic integrity, and motor function. Together, our work reveals an lncRNA-mediated transcriptional activation of Cbln1 through Pax6-Mll1-H3K4me3 and provides novel insights of the essential roles of lncRNA in the cerebellum.https://doi.org/10.1371/journal.pbio.3001297 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Yan Jin Bowen Zhang Junxia Lu Yingdong Song Wei Wang Wei Zhang Fanghong Shao Meng Gong Meiting Wang Xiaolin Liang Shuqin Li Zhi Zhang Ge Shan Xiangting Wang |
spellingShingle |
Yan Jin Bowen Zhang Junxia Lu Yingdong Song Wei Wang Wei Zhang Fanghong Shao Meng Gong Meiting Wang Xiaolin Liang Shuqin Li Zhi Zhang Ge Shan Xiangting Wang Long noncoding RNA PM maintains cerebellar synaptic integrity and Cbln1 activation via Pax6/Mll1-mediated H3K4me3. PLoS Biology |
author_facet |
Yan Jin Bowen Zhang Junxia Lu Yingdong Song Wei Wang Wei Zhang Fanghong Shao Meng Gong Meiting Wang Xiaolin Liang Shuqin Li Zhi Zhang Ge Shan Xiangting Wang |
author_sort |
Yan Jin |
title |
Long noncoding RNA PM maintains cerebellar synaptic integrity and Cbln1 activation via Pax6/Mll1-mediated H3K4me3. |
title_short |
Long noncoding RNA PM maintains cerebellar synaptic integrity and Cbln1 activation via Pax6/Mll1-mediated H3K4me3. |
title_full |
Long noncoding RNA PM maintains cerebellar synaptic integrity and Cbln1 activation via Pax6/Mll1-mediated H3K4me3. |
title_fullStr |
Long noncoding RNA PM maintains cerebellar synaptic integrity and Cbln1 activation via Pax6/Mll1-mediated H3K4me3. |
title_full_unstemmed |
Long noncoding RNA PM maintains cerebellar synaptic integrity and Cbln1 activation via Pax6/Mll1-mediated H3K4me3. |
title_sort |
long noncoding rna pm maintains cerebellar synaptic integrity and cbln1 activation via pax6/mll1-mediated h3k4me3. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS Biology |
issn |
1544-9173 1545-7885 |
publishDate |
2021-06-01 |
description |
Recent studies have shown that long noncoding RNAs (lncRNAs) are critical regulators in the central nervous system (CNS). However, their roles in the cerebellum are currently unclear. In this work, we identified the isoform 204 of lncRNA Gm2694 (designated as lncRNA-Promoting Methylation (lncRNA-PM)) is highly expressed in the cerebellum and derived from the antisense strand of the upstream region of Cerebellin-1 (Cbln1), a well-known critical cerebellar synaptic organizer. LncRNA-PM exhibits similar spatiotemporal expression pattern as Cbln1 in the postnatal mouse cerebellum and activates the transcription of Cbln1 through Pax6/Mll1-mediated H3K4me3. In mouse cerebellum, lncRNA-PM, Pax6/Mll1, and H3K4me3 are all associated with the regulatory regions of Cbln1. Knockdown of lncRNA-PM in cerebellum causes deficiencies in Cbln1 expression, cerebellar synaptic integrity, and motor function. Together, our work reveals an lncRNA-mediated transcriptional activation of Cbln1 through Pax6-Mll1-H3K4me3 and provides novel insights of the essential roles of lncRNA in the cerebellum. |
url |
https://doi.org/10.1371/journal.pbio.3001297 |
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