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  5. Epigenetic switch from repressive to permissive chromatin in response to cold stress

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Article
en
2018

Epigenetic switch from repressive to permissive chromatin in response to cold stress

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en
2018
Vol 115 (23)
Vol. 115
DOI: 10.1073/pnas.1721241115

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Jian Kang Zhu
Jian Kang Zhu

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Junghoon Park
Chae Jin Lim
Mingzhe Shen
+13 more

Abstract

Switching from repressed to active status in chromatin regulation is part of the critical responses that plants deploy to survive in an ever-changing environment. We previously reported that HOS15, a WD40-repeat protein, is involved in histone deacetylation and cold tolerance in Arabidopsis However, it remained unknown how HOS15 regulates cold responsive genes to affect cold tolerance. Here, we show that HOS15 interacts with histone deacetylase 2C (HD2C) and both proteins together associate with the promoters of cold-responsive COR genes, COR15A and COR47 Cold induced HD2C degradation is mediated by the CULLIN4 (CUL4)-based E3 ubiquitin ligase complex in which HOS15 acts as a substrate receptor. Interference with the association of HD2C and the COR gene promoters by HOS15 correlates with increased acetylation levels of histone H3. HOS15 also interacts with CBF transcription factors to modulate cold-induced binding to the COR gene promoters. Our results here demonstrate that cold induces HOS15-mediated chromatin modifications by degrading HD2C. This switches the chromatin structure status and facilitates recruitment of CBFs to the COR gene promoters. This is an apparent requirement to acquire cold tolerance.

How to cite this publication

Junghoon Park, Chae Jin Lim, Mingzhe Shen, Hee Jin Park, Joon‐Yung Cha, Elisa Iniesto, Vicente Rubio, Tesfaye Mengiste, Jian Kang Zhu, Ray A. Bressan, Sang Yeol Lee, Byeong‐ha Lee, Jing Bo Jin, José M. Pardo, Woe‐Yeon Kim, Dae‐Jin Yun (2018). Epigenetic switch from repressive to permissive chromatin in response to cold stress. , 115(23), DOI: https://doi.org/10.1073/pnas.1721241115.

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Publication Details

Type

Article

Year

2018

Authors

16

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1073/pnas.1721241115

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