Cargando…
An ABA-mimicking ligand that reduces water loss and promotes drought resistance in plants
Abscisic acid (ABA) is the most important hormone for plants to resist drought and other abiotic stresses. ABA binds directly to the PYR/PYL family of ABA receptors, resulting in inhibition of type 2C phosphatases (PP2C) and activation of downstream ABA signaling. It is envisioned that intervention...
Autores principales: | , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Nature Publishing Group
2013
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3731570/ https://www.ncbi.nlm.nih.gov/pubmed/23835477 http://dx.doi.org/10.1038/cr.2013.95 |
_version_ | 1782279174722945024 |
---|---|
author | Cao, Minjie Liu, Xue Zhang, Yan Xue, Xiaoqian Zhou, X Edward Melcher, Karsten Gao, Pan Wang, Fuxing Zeng, Liang Zhao, Yang Zhao, Yang Deng, Pan Zhong, Dafang Zhu, Jian-Kang Xu, H Eric Xu, Yong |
author_facet | Cao, Minjie Liu, Xue Zhang, Yan Xue, Xiaoqian Zhou, X Edward Melcher, Karsten Gao, Pan Wang, Fuxing Zeng, Liang Zhao, Yang Zhao, Yang Deng, Pan Zhong, Dafang Zhu, Jian-Kang Xu, H Eric Xu, Yong |
author_sort | Cao, Minjie |
collection | PubMed |
description | Abscisic acid (ABA) is the most important hormone for plants to resist drought and other abiotic stresses. ABA binds directly to the PYR/PYL family of ABA receptors, resulting in inhibition of type 2C phosphatases (PP2C) and activation of downstream ABA signaling. It is envisioned that intervention of ABA signaling by small molecules could help plants to overcome abiotic stresses such as drought, cold and soil salinity. However, chemical instability and rapid catabolism by plant enzymes limit the practical application of ABA itself. Here we report the identification of a small molecule ABA mimic (AM1) that acts as a potent activator of multiple members of the family of ABA receptors. In Arabidopsis, AM1 activates a gene network that is highly similar to that induced by ABA. Treatments with AM1 inhibit seed germination, prevent leaf water loss, and promote drought resistance. We solved the crystal structure of AM1 in complex with the PYL2 ABA receptor and the HAB1 PP2C, which revealed that AM1 mediates a gate-latch-lock interacting network, a structural feature that is conserved in the ABA-bound receptor/PP2C complex. Together, these results demonstrate that a single small molecule ABA mimic can activate multiple ABA receptors and protect plants from water loss and drought stress. Moreover, the AM1 complex crystal structure provides a structural basis for designing the next generation of ABA-mimicking small molecules. |
format | Online Article Text |
id | pubmed-3731570 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2013 |
publisher | Nature Publishing Group |
record_format | MEDLINE/PubMed |
spelling | pubmed-37315702013-08-02 An ABA-mimicking ligand that reduces water loss and promotes drought resistance in plants Cao, Minjie Liu, Xue Zhang, Yan Xue, Xiaoqian Zhou, X Edward Melcher, Karsten Gao, Pan Wang, Fuxing Zeng, Liang Zhao, Yang Zhao, Yang Deng, Pan Zhong, Dafang Zhu, Jian-Kang Xu, H Eric Xu, Yong Cell Res Original Article Abscisic acid (ABA) is the most important hormone for plants to resist drought and other abiotic stresses. ABA binds directly to the PYR/PYL family of ABA receptors, resulting in inhibition of type 2C phosphatases (PP2C) and activation of downstream ABA signaling. It is envisioned that intervention of ABA signaling by small molecules could help plants to overcome abiotic stresses such as drought, cold and soil salinity. However, chemical instability and rapid catabolism by plant enzymes limit the practical application of ABA itself. Here we report the identification of a small molecule ABA mimic (AM1) that acts as a potent activator of multiple members of the family of ABA receptors. In Arabidopsis, AM1 activates a gene network that is highly similar to that induced by ABA. Treatments with AM1 inhibit seed germination, prevent leaf water loss, and promote drought resistance. We solved the crystal structure of AM1 in complex with the PYL2 ABA receptor and the HAB1 PP2C, which revealed that AM1 mediates a gate-latch-lock interacting network, a structural feature that is conserved in the ABA-bound receptor/PP2C complex. Together, these results demonstrate that a single small molecule ABA mimic can activate multiple ABA receptors and protect plants from water loss and drought stress. Moreover, the AM1 complex crystal structure provides a structural basis for designing the next generation of ABA-mimicking small molecules. Nature Publishing Group 2013-08 2013-07-09 /pmc/articles/PMC3731570/ /pubmed/23835477 http://dx.doi.org/10.1038/cr.2013.95 Text en Copyright © 2013 Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences http://creativecommons.org/licenses/by-nc-nd/3.0 This work is licensed under the Creative Commons Attribution-NonCommercial-No Derivative Works 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/3.0 |
spellingShingle | Original Article Cao, Minjie Liu, Xue Zhang, Yan Xue, Xiaoqian Zhou, X Edward Melcher, Karsten Gao, Pan Wang, Fuxing Zeng, Liang Zhao, Yang Zhao, Yang Deng, Pan Zhong, Dafang Zhu, Jian-Kang Xu, H Eric Xu, Yong An ABA-mimicking ligand that reduces water loss and promotes drought resistance in plants |
title | An ABA-mimicking ligand that reduces water loss and promotes drought resistance in plants |
title_full | An ABA-mimicking ligand that reduces water loss and promotes drought resistance in plants |
title_fullStr | An ABA-mimicking ligand that reduces water loss and promotes drought resistance in plants |
title_full_unstemmed | An ABA-mimicking ligand that reduces water loss and promotes drought resistance in plants |
title_short | An ABA-mimicking ligand that reduces water loss and promotes drought resistance in plants |
title_sort | aba-mimicking ligand that reduces water loss and promotes drought resistance in plants |
topic | Original Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3731570/ https://www.ncbi.nlm.nih.gov/pubmed/23835477 http://dx.doi.org/10.1038/cr.2013.95 |
work_keys_str_mv | AT caominjie anabamimickingligandthatreduceswaterlossandpromotesdroughtresistanceinplants AT liuxue anabamimickingligandthatreduceswaterlossandpromotesdroughtresistanceinplants AT zhangyan anabamimickingligandthatreduceswaterlossandpromotesdroughtresistanceinplants AT xuexiaoqian anabamimickingligandthatreduceswaterlossandpromotesdroughtresistanceinplants AT zhouxedward anabamimickingligandthatreduceswaterlossandpromotesdroughtresistanceinplants AT melcherkarsten anabamimickingligandthatreduceswaterlossandpromotesdroughtresistanceinplants AT gaopan anabamimickingligandthatreduceswaterlossandpromotesdroughtresistanceinplants AT wangfuxing anabamimickingligandthatreduceswaterlossandpromotesdroughtresistanceinplants AT zengliang anabamimickingligandthatreduceswaterlossandpromotesdroughtresistanceinplants AT zhaoyang anabamimickingligandthatreduceswaterlossandpromotesdroughtresistanceinplants AT zhaoyang anabamimickingligandthatreduceswaterlossandpromotesdroughtresistanceinplants AT dengpan anabamimickingligandthatreduceswaterlossandpromotesdroughtresistanceinplants AT zhongdafang anabamimickingligandthatreduceswaterlossandpromotesdroughtresistanceinplants AT zhujiankang anabamimickingligandthatreduceswaterlossandpromotesdroughtresistanceinplants AT xuheric anabamimickingligandthatreduceswaterlossandpromotesdroughtresistanceinplants AT xuyong anabamimickingligandthatreduceswaterlossandpromotesdroughtresistanceinplants AT caominjie abamimickingligandthatreduceswaterlossandpromotesdroughtresistanceinplants AT liuxue abamimickingligandthatreduceswaterlossandpromotesdroughtresistanceinplants AT zhangyan abamimickingligandthatreduceswaterlossandpromotesdroughtresistanceinplants AT xuexiaoqian abamimickingligandthatreduceswaterlossandpromotesdroughtresistanceinplants AT zhouxedward abamimickingligandthatreduceswaterlossandpromotesdroughtresistanceinplants AT melcherkarsten abamimickingligandthatreduceswaterlossandpromotesdroughtresistanceinplants AT gaopan abamimickingligandthatreduceswaterlossandpromotesdroughtresistanceinplants AT wangfuxing abamimickingligandthatreduceswaterlossandpromotesdroughtresistanceinplants AT zengliang abamimickingligandthatreduceswaterlossandpromotesdroughtresistanceinplants AT zhaoyang abamimickingligandthatreduceswaterlossandpromotesdroughtresistanceinplants AT zhaoyang abamimickingligandthatreduceswaterlossandpromotesdroughtresistanceinplants AT dengpan abamimickingligandthatreduceswaterlossandpromotesdroughtresistanceinplants AT zhongdafang abamimickingligandthatreduceswaterlossandpromotesdroughtresistanceinplants AT zhujiankang abamimickingligandthatreduceswaterlossandpromotesdroughtresistanceinplants AT xuheric abamimickingligandthatreduceswaterlossandpromotesdroughtresistanceinplants AT xuyong abamimickingligandthatreduceswaterlossandpromotesdroughtresistanceinplants |