Arabidopsis ACINUS is O-glycosylated and regulates transcription and alternative splicing of regulators of reproductive transitions
AtACINUS is an Arabidopsis homolog of a mammalian splicing regulator and previously found to be O-GlcNAcyated. Here Bi et al. characterize the interactors and targets of AtACINUS, show it is required for development and stress responses and provide evidence that its O-glycosylation affects alternati...
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Nature Portfolio
2021
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oai:doaj.org-article:e80731db86bc4dd79d72a501630e0b752021-12-02T13:30:07ZArabidopsis ACINUS is O-glycosylated and regulates transcription and alternative splicing of regulators of reproductive transitions10.1038/s41467-021-20929-72041-1723https://doaj.org/article/e80731db86bc4dd79d72a501630e0b752021-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-20929-7https://doaj.org/toc/2041-1723AtACINUS is an Arabidopsis homolog of a mammalian splicing regulator and previously found to be O-GlcNAcyated. Here Bi et al. characterize the interactors and targets of AtACINUS, show it is required for development and stress responses and provide evidence that its O-glycosylation affects alternative splicing.Yang BiZhiping DengWeimin NiRuben ShresthaDasha SavageThomas HartwigSunita PatilSu Hyun HongZhenzhen ZhangJuan A. Oses-PrietoKathy H. LiPeter H. QuailAlma L. BurlingameShou-Ling XuZhi-Yong WangNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-13 (2021) |
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Science Q |
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Science Q Yang Bi Zhiping Deng Weimin Ni Ruben Shrestha Dasha Savage Thomas Hartwig Sunita Patil Su Hyun Hong Zhenzhen Zhang Juan A. Oses-Prieto Kathy H. Li Peter H. Quail Alma L. Burlingame Shou-Ling Xu Zhi-Yong Wang Arabidopsis ACINUS is O-glycosylated and regulates transcription and alternative splicing of regulators of reproductive transitions |
description |
AtACINUS is an Arabidopsis homolog of a mammalian splicing regulator and previously found to be O-GlcNAcyated. Here Bi et al. characterize the interactors and targets of AtACINUS, show it is required for development and stress responses and provide evidence that its O-glycosylation affects alternative splicing. |
format |
article |
author |
Yang Bi Zhiping Deng Weimin Ni Ruben Shrestha Dasha Savage Thomas Hartwig Sunita Patil Su Hyun Hong Zhenzhen Zhang Juan A. Oses-Prieto Kathy H. Li Peter H. Quail Alma L. Burlingame Shou-Ling Xu Zhi-Yong Wang |
author_facet |
Yang Bi Zhiping Deng Weimin Ni Ruben Shrestha Dasha Savage Thomas Hartwig Sunita Patil Su Hyun Hong Zhenzhen Zhang Juan A. Oses-Prieto Kathy H. Li Peter H. Quail Alma L. Burlingame Shou-Ling Xu Zhi-Yong Wang |
author_sort |
Yang Bi |
title |
Arabidopsis ACINUS is O-glycosylated and regulates transcription and alternative splicing of regulators of reproductive transitions |
title_short |
Arabidopsis ACINUS is O-glycosylated and regulates transcription and alternative splicing of regulators of reproductive transitions |
title_full |
Arabidopsis ACINUS is O-glycosylated and regulates transcription and alternative splicing of regulators of reproductive transitions |
title_fullStr |
Arabidopsis ACINUS is O-glycosylated and regulates transcription and alternative splicing of regulators of reproductive transitions |
title_full_unstemmed |
Arabidopsis ACINUS is O-glycosylated and regulates transcription and alternative splicing of regulators of reproductive transitions |
title_sort |
arabidopsis acinus is o-glycosylated and regulates transcription and alternative splicing of regulators of reproductive transitions |
publisher |
Nature Portfolio |
publishDate |
2021 |
url |
https://doaj.org/article/e80731db86bc4dd79d72a501630e0b75 |
work_keys_str_mv |
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