New Phytologist
Abstract
The ubiquitin 26S proteasome (26SP) system efficiently degrades many key regulators of plant development. 26SP consists of two subcomplexes: the catalytic 20S core particle (CP) and the 19S regulatory particle (RP). Previous studies have focused on 19S RP; whether there is a specific subunit in 20S CP that has a stress‐related biological function in plants is unclear.
PBE1, one of the β5 subunits ofArabidopsisproteasome CP, is essential for the assembly and proteolytic activity of 26SP in salt‐stressed seedlings. The expression ofPBE1is stress‐induced. During the transition from seed germination to autotrophic growth in salt‐stressed seedlings, loss ofPBE1function results specifically in arrest in developmental transition but not in germination and post‐germination growth. PBE1 is also important for other types of proteasome stress and Endoplasmic Reticulum (ER) stress.
PBE1 modulates the protein level of the transcription factor ABI5 and thereby down‐regulates the expression of several genes downstream of this key regulator which are known to be essential for plant growth under stress.
Collectively, our results showed PBE1‐mediated intact proteasome assembly that is essential for successful autotrophic growth, and revealed how PBE1 mediated stress proteasome functions to control both proteasome activity and abscisic acid (ABA)‐mediated stress signaling in plants.
论文编号: | DOI:10.1111/nph.15471 |
论文题目: | The β5 Subunit is Essential for Intact 26S Proteasome Assembly to Specifically Promote Pant Autotrophic Growth under Salt Stress |
英文论文题目: | The β5 Subunit is Essential for Intact 26S Proteasome Assembly to Specifically Promote Pant Autotrophic Growth under Salt Stress |
第一作者: | Jia-Jia Han, Xiaoyuan Yang, Qian Wang, Lu Tang, Feifei Yu, Xiahe Huang, Yingchun Wang, Jian-Xiang Liu, Qi Xie |
英文第一作者: | Jia-Jia Han, Xiaoyuan Yang, Qian Wang, Lu Tang, Feifei Yu, Xiahe Huang, Yingchun Wang, Jian-Xiang Liu, Qi Xie |
联系作者: | |
英文联系作者: | |
外单位作者单位: | |
英文外单位作者单位: | |
发表年度: | 2018-11-07 |
卷: | |
期: | |
页码: | |
摘要: | The ubiquitin 26S proteasome (26SP) system efficiently degrades many key regulators of plant development. 26SP consists of two subcomplexes: the catalytic 20S core particle (CP) and the 19S regulatory particle (RP). Previous studies have focused on 19S RP; whether there is a specific subunit in 20S CP that has a stress‐related biological function in plants is unclear. PBE1, one of the β5 subunits ofArabidopsisproteasome CP, is essential for the assembly and proteolytic activity of 26SP in salt‐stressed seedlings. The expression ofPBE1is stress‐induced. During the transition from seed germination to autotrophic growth in salt‐stressed seedlings, loss ofPBE1function results specifically in arrest in developmental transition but not in germination and post‐germination growth. PBE1 is also important for other types of proteasome stress and Endoplasmic Reticulum (ER) stress. PBE1 modulates the protein level of the transcription factor ABI5 and thereby down‐regulates the expression of several genes downstream of this key regulator which are known to be essential for plant growth under stress. Collectively, our results showed PBE1‐mediated intact proteasome assembly that is essential for successful autotrophic growth, and revealed how PBE1 mediated stress proteasome functions to control both proteasome activity and abscisic acid (ABA)‐mediated stress signaling in plants. |
英文摘要: | The ubiquitin 26S proteasome (26SP) system efficiently degrades many key regulators of plant development. 26SP consists of two subcomplexes: the catalytic 20S core particle (CP) and the 19S regulatory particle (RP). Previous studies have focused on 19S RP; whether there is a specific subunit in 20S CP that has a stress‐related biological function in plants is unclear. PBE1, one of the β5 subunits ofArabidopsisproteasome CP, is essential for the assembly and proteolytic activity of 26SP in salt‐stressed seedlings. The expression ofPBE1is stress‐induced. During the transition from seed germination to autotrophic growth in salt‐stressed seedlings, loss ofPBE1function results specifically in arrest in developmental transition but not in germination and post‐germination growth. PBE1 is also important for other types of proteasome stress and Endoplasmic Reticulum (ER) stress. PBE1 modulates the protein level of the transcription factor ABI5 and thereby down‐regulates the expression of several genes downstream of this key regulator which are known to be essential for plant growth under stress. Collectively, our results showed PBE1‐mediated intact proteasome assembly that is essential for successful autotrophic growth, and revealed how PBE1 mediated stress proteasome functions to control both proteasome activity and abscisic acid (ABA)‐mediated stress signaling in plants. |
刊物名称: | New Phytologist |
英文刊物名称: | New Phytologist |
论文全文: | |
英文论文全文: | |
全文链接: | |
其它备注: | Jia-Jia Han, Xiaoyuan Yang, Qian Wang, Lu Tang, Feifei Yu, Xiahe Huang, Yingchun Wang, Jian-Xiang Liu, Qi Xie. The β5 Subunit is Essential for Intact 26S Proteasome Assembly to Specifically Promote Pant Autotrophic Growth under Salt Stress. New Phytologist. DOI:10.1111/nph.15471 |
英文其它备注: | |
学科: | |
英文学科: | |
影响因子: | |
第一作者所在部门: | |
英文第一作者所在部门: | |
论文出处: | |
英文论文出处: | |
论文类别: | |
英文论文类别: | |
参与作者: | |
英文参与作者: |