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Inositol Pyrophosphate InsP8 Acts as an Intracellular Phosphate Signal in Arabidopsis

摘要The maintenance of cellular phosphate(Pi)homeostasis is of great importance in living organisms.The SPX domain-containing protein 1(SPX1)proteins from both Arabidopsis and rice have been proposed to act as sensors of Pi status.The molecular signal indicating the cellular Pi status and regulating Pi homeostasis in plants,however,remains to be identified,as Pi itself does not bind to the SPX domain.Here,we report the identification of the inositol pyrophosphate InsP8 as a signaling molecule that regulates Pi homeostasis in Atabidopsis.Polyacrylamide gel electrophoresis profiling of InsP8 revealed that InsP8 level positively cor-relates with cellular Pi concentration.We demonstrated that the homologs of diphosphoinositol pentaki-sphosphate kinase(PPIP5K),VIH1 and VIH2,function redundantly to synthesize InsP8,and that the vih1 vih2 double mutant overaccumulates Pi.SPX1 directly interacts with PHR1,the central regulator of Pi star-vation responses,to inhibit its function under Pi-replete conditions.However,this interaction is compro-mised in the vih 1 vih2 double mutant,resulting in the constitutive induction of Pi starvation-induced genes,indicating that plant cells cannot sense cellular Pi status without InsP8.Furthermore,we showed that InsP8 could directly bind to the SPX domain of SPX1 and is essential for the interaction between SPX1 and PHR1.Collectively,our study suggests that InsP8 is the intracellular Pi signaling molecule serving as the ligand of SPX1 for controlling Pi homeostasis in plants.

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作者单位 Shanghai Center for Plant Stress Biology,CAS Center for Excellence in Molecular Plant Sciences,Chinese Academy of Sciences,Shanghai 200032,China [1] National Key Laboratory of Plant Molecular Genetics,CAS Centre for Excellence in Molecular Plant Sciences,Shanghai Institute of Plant Physiology & Ecology,Chinese Academic of Sciences,Shanghai 200032,China;University of Chinese Academy of Sciences,Beijing 100049,China [2] Shanghai Center for Plant Stress Biology,CAS Center for Excellence in Molecular Plant Sciences,Chinese Academy of Sciences,Shanghai 200032,China;University of Chinese Academy of Sciences,Beijing 100049,China [3] Institute of Organic Chemistry,Albert-Ludwigs University,Freiburg,Albertstrasse 21,79104 Freiburg,Germany [4] Institute of Organic Chemistry,Albert-Ludwigs University,Freiburg,Albertstrasse 21,79104 Freiburg,Germany;CIBSS-Centre for Integrative Biological Signalling Studies,Albert-Ludwigs University,Freiburg,Albertstrasse 21,79104 Freiburg,Germany [5] Key Laboratory of Plant Stress Biology,School of Life Sciences,Henan University,Kaifeng 475004,China [6] National Key Laboratory of Plant Molecular Genetics,CAS Centre for Excellence in Molecular Plant Sciences,Shanghai Institute of Plant Physiology & Ecology,Chinese Academic of Sciences,Shanghai 200032,China [7] Center for Plant Biology,School of Life Sciences,Tsinghua University,Beijing 100084,China [8] Shanghai Center for Plant Stress Biology,CAS Center for Excellence in Molecular Plant Sciences,Chinese Academy of Sciences,Shanghai 200032,China;Key Laboratory of Plant Stress Biology,School of Life Sciences,Henan University,Kaifeng 475004,China [9]
栏目名称 Research Articles
发布时间 2020-03-24
基金项目
the Chinese Academy of Sciences the Science and Technology Commission of Shanghai Municipality China.H.J.J.was supported by the German Research Foundation (DFG) under Germany's Excellence Strategy
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2019年12卷11期

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