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STOP1 regulates CCX1-mediated Ca^(2+)homeostasis for plant adaptation to Ca^(2+)deprivation
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作者 Wen Hao Tian Wen Yan Cai +6 位作者 Chun Quan Zhu Ya Li Kong Xiao Chuang Cao Lian Feng Zhu Jia Yuan Ye Jun Hua Zhang Shao Jian Zheng 《Journal of Integrative Plant Biology》 SCIE CAS 2024年第10期2126-2139,共14页
Calcium(Ca)is essential for plant growth and stress adaptation,yet its availability is often limited in acidic soils,posing a major threat to crop production.Understanding the intricate mechanisms orchestrating plant ... Calcium(Ca)is essential for plant growth and stress adaptation,yet its availability is often limited in acidic soils,posing a major threat to crop production.Understanding the intricate mechanisms orchestrating plant adaptation to Ca deficiency remains elusive.Here,we show that the Ca deficiency-enhanced nuclear accumulation of the transcription factor SENSITIVE TO PROTON RHIZOTOXICITY 1(STOP1)in Arabidopsis thaliana confers tolerance to Ca deprivation,with the global transcriptional responses triggered by Ca deprivation largely impaired in the stop1 mutant.Notably,STOP1 activates the Ca deprivation-induced expression of CATION/Ca^(2+)EXCHANGER 1(CCX1)by directly binding to its promoter region,which facilitates Ca^(2+)efflux from endoplasmic reticulum to cytosol to maintain Ca homeostasis.Consequently,the constitutive expression of CCX1 in the stop1 mutant partially rescues the Ca deficiency phenotype by increasing Ca content in the shoots.These findings uncover the pivotal role of the STOP1-CCX1 axis in plant adaptation to low Ca,offering alternative manipulating strategies to improve plant Ca nutrition in acidic soils and extending our understanding of the multifaceted role of STOP1. 展开更多
关键词 Ca deficiency Ca homeostasis ccx1 STOP1 transcriptional response
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CXCR7的双重属性及其在肿瘤中的作用
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作者 汤立晨 欧周罗 +1 位作者 狄根红 邵志敏 《生命的化学》 CAS CSCD 北大核心 2009年第6期874-877,共4页
CXCR7作为G蛋白偶联受体超家族的一员,能与趋化因子CXCL11(I-TAC)及CXCL12(SDF-1)结合,具有功能性受体与诱骗受体的双重属性。CXCR7在与其配基结合后并不下传信号,但可以通过建立合适的趋化因子的梯度而促进肿瘤的生长与转移。本文主要... CXCR7作为G蛋白偶联受体超家族的一员,能与趋化因子CXCL11(I-TAC)及CXCL12(SDF-1)结合,具有功能性受体与诱骗受体的双重属性。CXCR7在与其配基结合后并不下传信号,但可以通过建立合适的趋化因子的梯度而促进肿瘤的生长与转移。本文主要介绍近年来有关CXCR7在肿瘤生长、转移中作用的研究进展。 展开更多
关键词 CXCR7(RDC1 CCX—CKR2) 肿瘤生长 肿瘤转移
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