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PMID: 21628566 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Monoubiquitin-dependent endocytosis of the iron-regulated transporter 1 (IRT1) transporter controls iron uptake in plants.

Barberon M, Zelazny E, Robert S, Conéjéro G, Curie C, Friml J, Vert G

Abstract

Plants take up iron from the soil using the iron-regulated transporter 1 (IRT1) high-affinity iron transporter at the root surface. Sophisticated regulatory mechanisms allow plants to tightly control the levels of IRT1, ensuring optimal absorption of essential but toxic iron. Here, we demonstrate that overexpression of Arabidopsis thaliana IRT1 leads to constitutive IRT1 protein accumulation, metal overload, and oxidative stress. IRT1 is unexpectedly found in trans-Golgi network/early endosomes of root hair cells, and its levels and localization are unaffected by iron nutrition. Using pharmacological approaches, we show that IRT1 cycles to the plasma membrane to perform iron and metal uptake at the cell surface and is sent to the vacuole for proper turnover. We also prove that IRT1 is monoubiquitinated on several cytosol-exposed residues in vivo and that mutation of two putative monoubiquitination target residues in IRT1 triggers stabilization at the plasma membrane and leads to extreme lethality. Together, these data suggest a model in which monoubiquitin-dependent internalization/sorting and turnover keep the plasma membrane pool of IRT1 low to ensure proper iron uptake and to prevent metal toxicity. More generally, our work demonstrates the existence of monoubiquitin-dependent trafficking to lytic vacuoles in plants and points to proteasome-independent turnover of plasma membrane proteins.

MeSH Terms
Arabidopsis/cytology,growth & development,metabolism Arabidopsis Proteins/metabolism Cation Transport Proteins/metabolism Cell Membrane/metabolism Endocytosis Endosomes/metabolism Iron/metabolism Lysine/metabolism Models, Biological Oxidative Stress Protein Processing, Post-Translational Protein Transport Ubiquitin/metabolism Ubiquitination Vacuoles/metabolism trans-Golgi Network/metabolism
Chemicals
Arabidopsis Proteins Cation Transport Proteins IRT1 protein, Arabidopsis Ubiquitin Iron Lysine
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Barberon Marie
Biochimie et Physiologie Moléculaire des Plantes, Centre National de la Recherche Scientifique Unité Mixte de Recherche 5004, Institut de Biologie Intégrative des Plantes, 34060 Montpellier Cedex 2, France.
Zelazny Enric
Robert Stéphanie
Conéjéro Geneviève
Curie Cathy
Friml Jìrí
Vert Grégory
References (49)
49 references, click to expand
  1. Monoubiquitin carries a novel internalization signal that is appended to activated receptors.
    EMBO J. 2000 Jan 17;19(2):187-98 PMID: 10637223
  2. Endosomal signaling of plant steroid receptor kinase BRI1.
    Genes Dev. 2007 Jul 1;21(13):1598-602 PMID: 17578906
  3. Receptor-specific ubiquitination of beta-arrestin directs assembly and targeting of seven-transmembrane receptor signalosomes.
    J Biol Chem. 2005 Apr 15;280(15):15315-24 PMID: 15699045
  4. Quality control of a mutant plasma membrane ATPase: ubiquitylation prevents cell-surface stability.
    J Cell Sci. 2006 Jan 15;119(Pt 2):360-9 PMID: 16410553
  5. Ubiquitination on nonlysine residues by a viral E3 ubiquitin ligase.
    Science. 2005 Jul 1;309(5731):127-30 PMID: 15994556
  6. Tyrphostin A23 inhibits internalization of the transferrin receptor by perturbing the interaction between tyrosine motifs and the medium chain subunit of the AP-2 adaptor complex.
    J Biol Chem. 2003 Apr 4;278(14):12022-8 PMID: 12556528
  7. Plant pattern-recognition receptor FLS2 is directed for degradation by the bacterial ubiquitin ligase AvrPtoB.
    Curr Biol. 2008 Dec 9;18(23):1824-32 PMID: 19062288
  8. Characterization of AtNST-KT1, a novel UDP-galactose transporter from Arabidopsis thaliana.
    FEBS Lett. 2006 Jul 24;580(17):4246-51 PMID: 16831428
  9. Cytokinins negatively regulate the root iron uptake machinery in Arabidopsis through a growth-dependent pathway.
    Plant J. 2008 Jul;55(2):289-300 PMID: 18397377
  10. Arrestin-related ubiquitin-ligase adaptors regulate endocytosis and protein turnover at the cell surface.
    Cell. 2008 Nov 14;135(4):714-25 PMID: 18976803
  11. Protein sorting into multivesicular endosomes.
    Curr Opin Cell Biol. 2003 Aug;15(4):446-55 PMID: 12892785
  12. Ubiquitin lys63 is involved in ubiquitination of a yeast plasma membrane protein.
    EMBO J. 1997 Oct 1;16(19):5847-54 PMID: 9312043
  13. Endocytosis and degradation of BOR1, a boron transporter of Arabidopsis thaliana, regulated by boron availability.
    Proc Natl Acad Sci U S A. 2005 Aug 23;102(34):12276-81 PMID: 16103374
  14. Ligand-induced endocytosis of the pattern recognition receptor FLS2 in Arabidopsis.
    Genes Dev. 2006 Mar 1;20(5):537-42 PMID: 16510871
  15. Ubiquitin and endocytic internalization in yeast and animal cells.
    Biochim Biophys Acta. 2004 Nov 29;1695(1-3):89-111 PMID: 15571811
  16. ERAD: the long road to destruction.
    Nat Cell Biol. 2005 Aug;7(8):766-72 PMID: 16056268
  17. Multiple monoubiquitination of RTKs is sufficient for their endocytosis and degradation.
    Nat Cell Biol. 2003 May;5(5):461-6 PMID: 12717448
  18. A novel iron-regulated metal transporter from plants identified by functional expression in yeast.
    Proc Natl Acad Sci U S A. 1996 May 28;93(11):5624-8 PMID: 8643627
  19. Altered selectivity in an Arabidopsis metal transporter.
    Proc Natl Acad Sci U S A. 2000 Oct 24;97(22):12356-60 PMID: 11035780
  20. Clathrin-mediated constitutive endocytosis of PIN auxin efflux carriers in Arabidopsis.
    Curr Biol. 2007 Mar 20;17(6):520-7 PMID: 17306539
  21. Intracellular trafficking and proteolysis of the Arabidopsis auxin-efflux facilitator PIN2 are involved in root gravitropism.
    Nat Cell Biol. 2006 Mar;8(3):249-56 PMID: 16489343
  22. Vacuolar H+-ATPase activity is required for endocytic and secretory trafficking in Arabidopsis.
    Plant Cell. 2006 Mar;18(3):715-30 PMID: 16461582
  23. Endosidin1 defines a compartment involved in endocytosis of the brassinosteroid receptor BRI1 and the auxin transporters PIN2 and AUX1.
    Proc Natl Acad Sci U S A. 2008 Jun 17;105(24):8464-9 PMID: 18550817
  24. The plant MT1 metallothioneins are stabilized by binding cadmiums and are required for cadmium tolerance and accumulation.
    Plant Mol Biol. 2005 Aug;58(6):839-855 PMID: 16240177
  25. The iron-responsive element (IRE)/iron-regulatory protein 1 (IRP1)-cytosolic aconitase iron-regulatory switch does not operate in plants.
    Biochem J. 2007 Aug 1;405(3):523-31 PMID: 17437406
  26. Ubiquitination of serine, threonine, or lysine residues on the cytoplasmic tail can induce ERAD of MHC-I by viral E3 ligase mK3.
    J Cell Biol. 2007 May 21;177(4):613-24 PMID: 17502423
  27. IRT1, an Arabidopsis transporter essential for iron uptake from the soil and for plant growth.
    Plant Cell. 2002 Jun;14(6):1223-33 PMID: 12084823
  28. AtbHLH29 of Arabidopsis thaliana is a functional ortholog of tomato FER involved in controlling iron acquisition in strategy I plants.
    Cell Res. 2005 Aug;15(8):613-21 PMID: 16117851
  29. Knock-out of Arabidopsis metal transporter gene IRT1 results in iron deficiency accompanied by cell differentiation defects.
    Plant Mol Biol. 2002 Nov;50(4-5):587-97 PMID: 12374293
  30. Proteasome inhibitors block a late step in lysosomal transport of selected membrane but not soluble proteins.
    Mol Biol Cell. 2001 Aug;12(8):2556-66 PMID: 11514635
  31. The specificity of vesicle trafficking: coat proteins and SNAREs.
    Plant Cell. 1999 Apr;11(4):629-42 PMID: 10213783
  32. The yeast ubiquitin gene: head-to-tail repeats encoding a polyubiquitin precursor protein.
    Nature. 1984 Dec 13-19;312(5995):663-6 PMID: 6095120
  33. FRU (BHLH029) is required for induction of iron mobilization genes in Arabidopsis thaliana.
    FEBS Lett. 2004 Nov 19;577(3):528-34 PMID: 15556641
  34. Arabidopsis IRT2 gene encodes a root-periphery iron transporter.
    Plant J. 2001 Apr;26(2):181-9 PMID: 11389759
  35. Expression of the IRT1 metal transporter is controlled by metals at the levels of transcript and protein accumulation.
    Plant Cell. 2002 Jun;14(6):1347-57 PMID: 12084831
  36. Signals for sorting of transmembrane proteins to endosomes and lysosomes.
    Annu Rev Biochem. 2003;72:395-447 PMID: 12651740
  37. Direct sorting of the yeast uracil permease to the endosomal system is controlled by uracil binding and Rsp5p-dependent ubiquitylation.
    Mol Biol Cell. 2004 Feb;15(2):883-95 PMID: 14657252
  38. Ubiquitin and the control of protein fate in the secretory and endocytic pathways.
    Annu Rev Cell Dev Biol. 1998;14:19-57 PMID: 9891777
  39. The essential basic helix-loop-helix protein FIT1 is required for the iron deficiency response.
    Plant Cell. 2004 Dec;16(12):3400-12 PMID: 15539473
  40. Iron transport and signaling in plants.
    Annu Rev Plant Biol. 2003;54:183-206 PMID: 14509968
  41. Why green fluorescent fusion proteins have not been observed in the vacuoles of higher plants.
    Plant J. 2003 Aug;35(4):545-55 PMID: 12904216
  42. Immunocytochemical techniques for whole-mount in situ protein localization in plants.
    Nat Protoc. 2006;1(1):98-103 PMID: 17406218
  43. The Arabidopsis GNOM ARF-GEF mediates endosomal recycling, auxin transport, and auxin-dependent plant growth.
    Cell. 2003 Jan 24;112(2):219-30 PMID: 12553910
  44. Iron-regulated expression of a cytosolic ascorbate peroxidase encoded by the APX1 gene in Arabidopsis seedlings.
    Plant Physiol. 2004 Feb;134(2):605-13 PMID: 14739345
  45. Ferritins control interaction between iron homeostasis and oxidative stress in Arabidopsis.
    Plant J. 2009 Feb;57(3):400-12 PMID: 18826427
  46. Components of a ubiquitin ligase complex specify polyubiquitination and intracellular trafficking of the general amino acid permease.
    J Cell Biol. 2001 May 14;153(4):649-62 PMID: 11352928
  47. A proteomic study reveals novel insights into the diversity of aquaporin forms expressed in the plasma membrane of plant roots.
    Biochem J. 2003 Jul 1;373(Pt 1):289-96 PMID: 12678916
  48. Drought stress-induced Rma1H1, a RING membrane-anchor E3 ubiquitin ligase homolog, regulates aquaporin levels via ubiquitination in transgenic Arabidopsis plants.
    Plant Cell. 2009 Feb;21(2):622-41 PMID: 19234086
  49. Ubiquitination and proteasomal activity is required for transport of the EGF receptor to inner membranes of multivesicular bodies.
    J Cell Biol. 2002 Mar 4;156(5):843-54 PMID: 11864992
Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
1091-6490
Published
2011-08-09
Epub
2011-00-31
Pages
E450-8
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC3156158
Subset
IM
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