Eukaryotic Phosphate Homeostasis: The Inositol Pyrophosphate Perspective

被引:112
|
作者
Azevedo, Cristina [1 ]
Saiardi, Adolfo [1 ]
机构
[1] UCL, Mol Cell Biol Lab, MRC, London WC1E 6BT, England
关键词
SPX DOMAIN; HEXAKISPHOSPHATE KINASE; DIPHOSPHOINOSITOL PENTAKISPHOSPHATE; INORGANIC POLYPHOSPHATE; STARVATION RESPONSE; CONSERVED FAMILY; KEY ROLE; IDENTIFICATION; ARABIDOPSIS; TRANSPORTER;
D O I
10.1016/j.tibs.2016.10.008
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Phosphate, as a cellular energy currency, essentially drives most biochemical reactions defining living organisms, and thus its homeostasis must be tightly regulated. Investigation into the role of inositol pyrophosphates (PP-IPs) has provided a novel perspective on the regulation of phosphate homeostasis. Recent data suggest that metabolic and signaling interplay between PP-IPs, ATP, and inorganic polyphosphate (polyP) influences and is influenced by cellular phosphate homeostasis. Different studies have demonstrated that the SPX protein domain is a key component of proteins involved in phosphate metabolism. How PP-IPs control some aspects of phosphate homeostasis has become clearer with the recently acquired crystal structures of SPX domains. We review here recent studies on eukaryote phosphate homeostasis and provide insights into future research.
引用
收藏
页码:219 / 231
页数:13
相关论文
共 50 条
  • [1] Control of eukaryotic phosphate homeostasis by inositol polyphosphate sensor domains
    Wild, Rebekka
    Gerasimaite, Ruta
    Jung, Ji-Yul
    Truffault, Vincent
    Pavlovic, Igor
    Schmidt, Andrea
    Saiardi, Adolfo
    Jessen, Henning Jacob
    Poirier, Yves
    Hothorn, Michael
    Mayer, Andreas
    SCIENCE, 2016, 352 (6288) : 986 - 990
  • [2] Two bifunctional inositol pyrophosphate kinases/phosphatases control plant phosphate homeostasis
    Zhu, Jinsheng
    Lau, Kelvin
    Puschmann, Robert
    Harmel, Robert K.
    Zhang, Youjun
    Pries, Verena
    Gaugler, Philipp
    Broger, Larissa
    Dutta, Amit K.
    Jessen, Henning J.
    Schaaf, Gabriel
    Fernie, Alisdair R.
    Hothorn, Ludwig A.
    Fiedler, Dorothea
    Hothorn, Michael
    ELIFE, 2019, 8
  • [3] Inositol Pyrophosphate and Phosphate Sensing in Plants
    Gillaspy, Glenda
    Adepoju, Olusegun
    Land, Eric
    Williams, Sarah Phoebe
    Donahue, Janet
    Cridland, Caitlin
    Freed, Catherine
    Perera, Imara
    FASEB JOURNAL, 2019, 33
  • [4] PHOSPHATE AND PYROPHOSPHATE - HOMEOSTASIS OF INORGANIC-PHOSPHATE - INTRODUCTORY REVIEW
    FLEISCH, H
    BONJOUR, JP
    TROEHLER, U
    CALCIFIED TISSUE RESEARCH, 1976, 21 : 327 - 331
  • [5] Structural basis for an inositol pyrophosphate kinase surmounting phosphate crowding
    Wang, Huanchen
    Falck, J. R.
    Hall, Traci M. Tanaka
    Shears, Stephen B.
    NATURE CHEMICAL BIOLOGY, 2012, 8 (01) : 111 - 116
  • [6] Structural basis for an inositol pyrophosphate kinase surmounting phosphate crowding
    Huanchen Wang
    J R Falck
    Traci M Tanaka Hall
    Stephen B Shears
    Nature Chemical Biology, 2012, 8 : 111 - 116
  • [7] pH homeostasis in yeast; the phosphate perspective
    Elja Eskes
    Marie-Anne Deprez
    Tobias Wilms
    Joris Winderickx
    Current Genetics, 2018, 64 : 155 - 161
  • [8] pH homeostasis in yeast; the phosphate perspective
    Eskes, Elja
    Deprez, Marie-Anne
    Wilms, Tobias
    Winderickx, Joris
    CURRENT GENETICS, 2018, 64 (01) : 155 - 161
  • [9] Control of plant phosphate homeostasis by inositol pyrophosphates and the SPX domain
    Jung, Ji-Yul
    Ried, Martina K.
    Hothorn, Michael
    Poirier, Yves
    CURRENT OPINION IN BIOTECHNOLOGY, 2018, 49 : 156 - 162
  • [10] Inositol pyrophosphate pyrotechnics
    Bhandari, Rashna
    Chakraborty, Anutosh
    Snyder, Solomon H.
    CELL METABOLISM, 2007, 5 (05) : 321 - 323