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Arabidopsis CIRP1 E3 ligase modulates drought and oxidative stress tolerance and reactive oxygen species homeostasis by directly degrading catalases
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作者 Heng Yang Yi Zhang +5 位作者 Shanwu Lyu Yaping Mao Fangqin Yu Sai Liu Yujie Fang Shulin Deng 《Journal of Integrative Plant Biology》 2025年第5期1274-1289,共16页
Reactive oxygen species(ROS)plays critical roles in modulating plant growth and stress response and its homeostasis is fine tuned using multiple peroxidases.H_(2)O_(2),a major kind of ROS,is removed rapidly and direct... Reactive oxygen species(ROS)plays critical roles in modulating plant growth and stress response and its homeostasis is fine tuned using multiple peroxidases.H_(2)O_(2),a major kind of ROS,is removed rapidly and directly using three catalases,CAT1,CAT2,and CAT3,in Arabidopsis.Although the activity regulations of catalases have been well studied,their degradation pathway is less clear.Here,we report that CAT2 and CAT3 protein abundance was partially controlled using the 26S proteasome.To further identify candidate proteins that modulate the stability of CAT2,we performed yeast-two-hybrid screening and recovered several clones encoding a protein with RING and vWA domains,CIRP1(CAT2Interacting RING Protein 1).Drought and oxidative stress downregulated CIRP1 transcripts.CIRP1 harbored E3 ubiquitination activity and accelerated the degradation of CAT2 and CAT3 by direct interaction and ubiquitination.The cirp1 mutants exhibited stronger drought and oxidative stress tolerance,which was opposite to the cat2 and cat3 mutants.Genetic analysis revealed that CIRP1 acts upstream of CAT2 and CAT3 to negatively regulate drought and oxidative stress tolerance.The increased drought and oxidative stress tolerance of the cirp1mutants was due to enhanced catalase(CAT)activities and alleviated ROS levels.Our data revealed that the CIRP1-CAT2/CAT3 module plays a vital role in alleviating ROS levels and balancing growth and stress responses in Arabidopsis. 展开更多
关键词 CAT2 cirp1 drought tolerance oxidative tolerance reactive oxygen species UBIQUITINATION
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牙鲆耐寒相关基因CIRP、HMGB1的克隆及表达特征分析 被引量:7
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作者 胡金伟 尤锋 +3 位作者 王倩 王丽娟 翁申达 辛梦娇 《海洋科学》 CAS CSCD 北大核心 2015年第1期29-38,共10页
为鲆鲽鱼耐低温标记辅助育种研究和应用提供候选基因,并了解耐寒相关基因在低温下的表达图示,作者通过同源克隆以及5¢/3¢RACE 的方法扩增得到了牙鲆(Paralichthys olivaceus)CIRP 和HMGB1基因。组织表达谱分析显示,这两个基因在... 为鲆鲽鱼耐低温标记辅助育种研究和应用提供候选基因,并了解耐寒相关基因在低温下的表达图示,作者通过同源克隆以及5¢/3¢RACE 的方法扩增得到了牙鲆(Paralichthys olivaceus)CIRP 和HMGB1基因。组织表达谱分析显示,这两个基因在脑、鳃、心脏、肌肉、肝脏、肠等组织均有表达,但HMGB1基因在鳃中表达较弱。低温胁迫后,两基因随着胁迫时间的延长其表达量在肌肉中都出现先上升后下降的趋势:在0~12 h逐渐上升并达到最大值,然后下降恢复至最初水平。但在肝脏和脑组织中的变化趋势却不同,低温胁迫后0~2 h HMGB1基因在脑中的表达量上升至最高,然后下降至最初水平,在肝脏中变化不大。而CIRP基因在低温胁迫后0~2 h在肝脏中表达量处于上升趋势,然后下降至初始水平,在脑中变化不大。由此推测,这两个基因在低温条件下都参与了机体对外界的抵抗,特别是在抵抗外界寒冷的主要组织—肌肉中发挥作用,可能共同参与了机体的免疫反应,对低温胁迫环境下的鱼体进行保护,可以作为鱼类耐低温标记筛选的候选基因。 展开更多
关键词 牙鲆(Paralichthys olivaceus) 低温胁迫 CIRP和HMGB1 克隆 RT-PCR
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