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EL1-like Casein Kinases Suppress ABA Signaling and Responses by Phosphorylating and Destabilizing the ABA Receptors PYR/PYLs in Arabidopsis 被引量:21
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作者 Hu-Hui Chen Li Qu +2 位作者 Zhi-Hong Xu Jian-Kang Zhu Hong-Wei Xue 《Molecular Plant》 SCIE CAS CSCD 2018年第5期706-719,共14页
Unveiling the signal transduction of phytohormone abscisic acid (ABA) and its regulatory mechanisms is critical for developing the strategies toward improving plant responses to stressful environments. ABA signaling... Unveiling the signal transduction of phytohormone abscisic acid (ABA) and its regulatory mechanisms is critical for developing the strategies toward improving plant responses to stressful environments. ABA signaling is perceived and mediated by multiple PYR/PYL receptors, whose post-translational modifications, especially phosphorylation, remain largely unknown. In this study, we demonstrate thatArabidopsis ELl-like (AEL) protein, a casein kinase that regulates various physiological processes, phosphorylate PYR/PYLs to promote their ubiquitination and degradation, resulting in suppressed ABA responses. Arabidopsis ael triple mutants display hypersensitive responses to ABA treatment, which is consistent with the suppressed degradation of PYR/PYL proteins. PYR/PYLs are phosphorylated in vivo and mutation of the conserved AEL phosphorylation sites results in reduced phosphorylation, ubiquitination, and degradation of PYR/PYLs, and hence enhanced ABA responses. Taken together, these results demonstrate that AEL-mediated phosphorylation plays crucial roles in regulating the stability and function of PYR/ PYLs, providing significant insights into the post-translational regulation of PYR/PYL receptors and ABA signaling. 展开更多
关键词 arabidopsis ABA ael (arabidopsis el1 -like) PYR/PYLs PHOSPHORYLATION degradation
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基于数据独立采集的磷酸化蛋白质组学全面揭示I型酪蛋白激酶在植物发育中的作用 被引量:1
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作者 渠莉 刘默洋 +2 位作者 郑玲丽 王旭 薛红卫 《Science Bulletin》 SCIE EI CAS CSCD 2023年第18期2077-2093,M0004,共18页
I型酪蛋白激酶(CKI)是一类真核生物中高度保守的丝氨酸/苏氨酸蛋白激酶,通过介导底物的磷酸化调节生长发育和信号转导:拟南芥蛋白AELs,是植物特异的CK1,具有多种功能,但其内源底物的准确识别和验证极大地限制了对CK1生理功能的系统阐明... I型酪蛋白激酶(CKI)是一类真核生物中高度保守的丝氨酸/苏氨酸蛋白激酶,通过介导底物的磷酸化调节生长发育和信号转导:拟南芥蛋白AELs,是植物特异的CK1,具有多种功能,但其内源底物的准确识别和验证极大地限制了对CK1生理功能的系统阐明.本研究通过数据独立采集模式(DIA)开展的磷酸化蛋白质组学研究系统揭示了CKI的内源底物:从AELs过表达及多种突变体的幼苗中提取蛋白并进行质谱检测,与野生型比较分析获取了3985个在AELs过表达材料中丰度高于野生型(Col-0)以及在缺失突变体中丰度低于Col-0的磷酸化肽段(AEL依赖的磷酸化肽段).对应获得1032个磷酸化蛋白。进一步从磷酸化肽段中富集了8个底物识别基序并对其中4个新基序进行了实验验证,用于预测CK1的潜在候选底物,基于富集到的一个参与生殖发育的锌指转录因子,C3H17,我们通过生化和遗传分析进行了底物验证和功能鉴定,证明AEL通过介导C3H17磷酸化以增强蛋白稳定性和转录活性进而调控拟南芥的胚胎发育,基于CK1在真核生物中的高度保守性,进一步利用CK1的底物识别基序搜索了水稻、小鼠和人类的蛋白数据库,获得了远超已知数目的众多候选底物,极大地扩展了对CK1在动植物中发挥的共同和独特功能的理解,为跨物种全面揭示CK1的保守功能提供了重要线索. 展开更多
关键词 Casein kinase 1(CK1) arabidopsis el1-like(ael) Data-independent acquisition(DIA) PHOSPHOPROTEOMICS C3H17 Embryo development
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