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The nucleolar protein SAHY1 is involved in pre-rRNA processing and normal plant growth

Although the nucleolus is involved in ribosome biogenesis, the functions of numerous nucleolus-localized proteins remain unclear. In this study, we genetically isolated Arabidopsis thaliana salt hypersensitive mutant 1 (sahy1), which exhibits slow growth, short roots, pointed leaves, and sterility....

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Autores principales: Hsu, Pei-jung, Tan, Mei-Chen, Shen, Hwei-Ling, Chen, Ya-Huei, Wang, Ya-Ying, Hwang, San-Gwang, Chiang, Ming-Hau, Le, Quang-Vuong, Kuo, Wen-Shuo, Chou, Ying-Chan, Lin, Shih-Yun, Jauh, Guang-Yuh, Cheng, Wan-Hsing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8133687/
https://www.ncbi.nlm.nih.gov/pubmed/33793900
http://dx.doi.org/10.1093/plphys/kiaa085
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author Hsu, Pei-jung
Tan, Mei-Chen
Shen, Hwei-Ling
Chen, Ya-Huei
Wang, Ya-Ying
Hwang, San-Gwang
Chiang, Ming-Hau
Le, Quang-Vuong
Kuo, Wen-Shuo
Chou, Ying-Chan
Lin, Shih-Yun
Jauh, Guang-Yuh
Cheng, Wan-Hsing
author_facet Hsu, Pei-jung
Tan, Mei-Chen
Shen, Hwei-Ling
Chen, Ya-Huei
Wang, Ya-Ying
Hwang, San-Gwang
Chiang, Ming-Hau
Le, Quang-Vuong
Kuo, Wen-Shuo
Chou, Ying-Chan
Lin, Shih-Yun
Jauh, Guang-Yuh
Cheng, Wan-Hsing
author_sort Hsu, Pei-jung
collection PubMed
description Although the nucleolus is involved in ribosome biogenesis, the functions of numerous nucleolus-localized proteins remain unclear. In this study, we genetically isolated Arabidopsis thaliana salt hypersensitive mutant 1 (sahy1), which exhibits slow growth, short roots, pointed leaves, and sterility. SAHY1 encodes an uncharacterized protein that is predominantly expressed in root tips, early developing seeds, and mature pollen grains and is mainly restricted to the nucleolus. Dysfunction of SAHY1 primarily causes the accumulation of 32S, 18S-A(3), and 27SB pre-rRNA intermediates. Coimmunoprecipitation experiments further revealed the interaction of SAHY1 with ribosome proteins and ribosome biogenesis factors. Moreover, sahy1 mutants are less sensitive to protein translation inhibitors and show altered expression of structural constituents of ribosomal genes and ribosome subunit profiles, reflecting the involvement of SAHY1 in ribosome composition and ribosome biogenesis. Analyses of ploidy, S-phase cell cycle progression, and auxin transport and signaling indicated the impairment of mitotic activity, translation of auxin transport carrier proteins, and expression of the auxin-responsive marker DR5::GFP in the root tips or embryos of sahy1 plants. Collectively, these data demonstrate that SAHY1, a nucleolar protein involved in ribosome biogenesis, plays critical roles in normal plant growth in association with auxin transport and signaling.
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spelling pubmed-81336872021-05-25 The nucleolar protein SAHY1 is involved in pre-rRNA processing and normal plant growth Hsu, Pei-jung Tan, Mei-Chen Shen, Hwei-Ling Chen, Ya-Huei Wang, Ya-Ying Hwang, San-Gwang Chiang, Ming-Hau Le, Quang-Vuong Kuo, Wen-Shuo Chou, Ying-Chan Lin, Shih-Yun Jauh, Guang-Yuh Cheng, Wan-Hsing Plant Physiol Regular Issue Although the nucleolus is involved in ribosome biogenesis, the functions of numerous nucleolus-localized proteins remain unclear. In this study, we genetically isolated Arabidopsis thaliana salt hypersensitive mutant 1 (sahy1), which exhibits slow growth, short roots, pointed leaves, and sterility. SAHY1 encodes an uncharacterized protein that is predominantly expressed in root tips, early developing seeds, and mature pollen grains and is mainly restricted to the nucleolus. Dysfunction of SAHY1 primarily causes the accumulation of 32S, 18S-A(3), and 27SB pre-rRNA intermediates. Coimmunoprecipitation experiments further revealed the interaction of SAHY1 with ribosome proteins and ribosome biogenesis factors. Moreover, sahy1 mutants are less sensitive to protein translation inhibitors and show altered expression of structural constituents of ribosomal genes and ribosome subunit profiles, reflecting the involvement of SAHY1 in ribosome composition and ribosome biogenesis. Analyses of ploidy, S-phase cell cycle progression, and auxin transport and signaling indicated the impairment of mitotic activity, translation of auxin transport carrier proteins, and expression of the auxin-responsive marker DR5::GFP in the root tips or embryos of sahy1 plants. Collectively, these data demonstrate that SAHY1, a nucleolar protein involved in ribosome biogenesis, plays critical roles in normal plant growth in association with auxin transport and signaling. Oxford University Press 2020-12-29 /pmc/articles/PMC8133687/ /pubmed/33793900 http://dx.doi.org/10.1093/plphys/kiaa085 Text en © The Author(s) 2020. Published by Oxford University Press on behalf of American Society of Plant Biologists. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Regular Issue
Hsu, Pei-jung
Tan, Mei-Chen
Shen, Hwei-Ling
Chen, Ya-Huei
Wang, Ya-Ying
Hwang, San-Gwang
Chiang, Ming-Hau
Le, Quang-Vuong
Kuo, Wen-Shuo
Chou, Ying-Chan
Lin, Shih-Yun
Jauh, Guang-Yuh
Cheng, Wan-Hsing
The nucleolar protein SAHY1 is involved in pre-rRNA processing and normal plant growth
title The nucleolar protein SAHY1 is involved in pre-rRNA processing and normal plant growth
title_full The nucleolar protein SAHY1 is involved in pre-rRNA processing and normal plant growth
title_fullStr The nucleolar protein SAHY1 is involved in pre-rRNA processing and normal plant growth
title_full_unstemmed The nucleolar protein SAHY1 is involved in pre-rRNA processing and normal plant growth
title_short The nucleolar protein SAHY1 is involved in pre-rRNA processing and normal plant growth
title_sort nucleolar protein sahy1 is involved in pre-rrna processing and normal plant growth
topic Regular Issue
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8133687/
https://www.ncbi.nlm.nih.gov/pubmed/33793900
http://dx.doi.org/10.1093/plphys/kiaa085
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