How Many Faces Does the Plant U-Box E3 Ligase Have?

Ubiquitination is a major type of post-translational modification of proteins in eukaryotes. The plant U-Box (PUB) E3 ligase is the smallest family in the E3 ligase superfamily, but plays a variety of essential roles in plant growth, development and response to diverse environmental stresses. Hence,...

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Main Authors: Xinguo Mao, Chunmei Yu, Long Li, Min Wang, Lili Yang, Yining Zhang, Yanfei Zhang, Jingyi Wang, Chaonan Li, Reynolds, Matthew P., Ruilian Jing
Format: Journal Article
Language:Inglés
Published: MDPI 2022
Subjects:
Online Access:https://hdl.handle.net/10568/129937
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author Xinguo Mao
Chunmei Yu
Long Li
Min Wang
Lili Yang
Yining Zhang
Yanfei Zhang
Jingyi Wang
Chaonan Li
Reynolds, Matthew P.
Ruilian Jing
author_browse Chaonan Li
Chunmei Yu
Jingyi Wang
Lili Yang
Long Li
Min Wang
Reynolds, Matthew P.
Ruilian Jing
Xinguo Mao
Yanfei Zhang
Yining Zhang
author_facet Xinguo Mao
Chunmei Yu
Long Li
Min Wang
Lili Yang
Yining Zhang
Yanfei Zhang
Jingyi Wang
Chaonan Li
Reynolds, Matthew P.
Ruilian Jing
author_sort Xinguo Mao
collection Repository of Agricultural Research Outputs (CGSpace)
description Ubiquitination is a major type of post-translational modification of proteins in eukaryotes. The plant U-Box (PUB) E3 ligase is the smallest family in the E3 ligase superfamily, but plays a variety of essential roles in plant growth, development and response to diverse environmental stresses. Hence, PUBs are potential gene resources for developing climate-resilient crops. However, there is a lack of review of the latest advances to fully understand the powerful gene family. To bridge the gap and facilitate its use in future crop breeding, we comprehensively summarize the recent progress of the PUB family, including gene evolution, classification, biological functions, and multifarious regulatory mechanisms in plants.
format Journal Article
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institution CGIAR Consortium
language Inglés
publishDate 2022
publishDateRange 2022
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publisherStr MDPI
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spelling CGSpace1299372025-12-08T10:29:22Z How Many Faces Does the Plant U-Box E3 Ligase Have? Xinguo Mao Chunmei Yu Long Li Min Wang Lili Yang Yining Zhang Yanfei Zhang Jingyi Wang Chaonan Li Reynolds, Matthew P. Ruilian Jing abiotic stress biotic stress development proteins plant growth Ubiquitination is a major type of post-translational modification of proteins in eukaryotes. The plant U-Box (PUB) E3 ligase is the smallest family in the E3 ligase superfamily, but plays a variety of essential roles in plant growth, development and response to diverse environmental stresses. Hence, PUBs are potential gene resources for developing climate-resilient crops. However, there is a lack of review of the latest advances to fully understand the powerful gene family. To bridge the gap and facilitate its use in future crop breeding, we comprehensively summarize the recent progress of the PUB family, including gene evolution, classification, biological functions, and multifarious regulatory mechanisms in plants. 2022-02-18 2023-04-07T12:22:33Z 2023-04-07T12:22:33Z Journal Article https://hdl.handle.net/10568/129937 en Open Access application/pdf MDPI Mao, X., Yu, C., Li, L., Wang, M., Yang, L., Zhang, Y., Zhang, Y., Wang, J., Li, C., Reynolds, M. P., & Jing, R. (2022). How Many Faces Does the Plant U-Box E3 Ligase Have? International Journal of Molecular Sciences, 23(4), 2285. https://doi.org/10.3390/ijms23042285
spellingShingle abiotic stress
biotic stress
development
proteins
plant growth
Xinguo Mao
Chunmei Yu
Long Li
Min Wang
Lili Yang
Yining Zhang
Yanfei Zhang
Jingyi Wang
Chaonan Li
Reynolds, Matthew P.
Ruilian Jing
How Many Faces Does the Plant U-Box E3 Ligase Have?
title How Many Faces Does the Plant U-Box E3 Ligase Have?
title_full How Many Faces Does the Plant U-Box E3 Ligase Have?
title_fullStr How Many Faces Does the Plant U-Box E3 Ligase Have?
title_full_unstemmed How Many Faces Does the Plant U-Box E3 Ligase Have?
title_short How Many Faces Does the Plant U-Box E3 Ligase Have?
title_sort how many faces does the plant u box e3 ligase have
topic abiotic stress
biotic stress
development
proteins
plant growth
url https://hdl.handle.net/10568/129937
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