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PMID: 20532238 Published · epublish English Journal Article Research Support, Non-U.S. Gov't

A feed-forward circuit linking wingless, fat-dachsous signaling, and the warts-hippo pathway to Drosophila wing growth.

PLoS biology ·Vol. 8 ·No. 6 ·2010-06-01 ·Pages e1000386

Zecca M, Struhl G

Abstract

During development, the Drosophila wing primordium undergoes a dramatic increase in cell number and mass under the control of the long-range morphogens Wingless (Wg, a Wnt) and Decapentaplegic (Dpp, a BMP). This process depends in part on the capacity of wing cells to recruit neighboring, non-wing cells into the wing primordium. Wing cells are defined by activity of the selector gene vestigial (vg) and recruitment entails the production of a vg-dependent "feed-forward signal" that acts together with morphogen to induce vg expression in neighboring non-wing cells. Here, we identify the protocadherins Fat (Ft) and Dachsous (Ds), the Warts-Hippo tumor suppressor pathway, and the transcriptional co-activator Yorkie (Yki, a YES associated protein, or YAP) as components of the feed-forward signaling mechanism, and we show how this mechanism promotes wing growth in response to Wg. We find that vg generates the feed-forward signal by creating a steep differential in Ft-Ds signaling between wing and non-wing cells. This differential down-regulates Warts-Hippo pathway activity in non-wing cells, leading to a burst of Yki activity and the induction of vg in response to Wg. We posit that Wg propels wing growth at least in part by fueling a wave front of Ft-Ds signaling that propagates vg expression from one cell to the next.

MeSH Terms
Animals Cadherins/metabolism Cell Adhesion Molecules/metabolism Drosophila/growth & development Drosophila Proteins/metabolism Intracellular Signaling Peptides and Proteins/metabolism Protein Kinases/metabolism Protein Serine-Threonine Kinases/metabolism Signal Transduction Wings, Animal/growth & development Wnt1 Protein/metabolism
Chemicals
Cadherins Cell Adhesion Molecules Drosophila Proteins Intracellular Signaling Peptides and Proteins Wnt1 Protein ds protein, Drosophila ft protein, Drosophila wg protein, Drosophila Protein Kinases wts protein, Drosophila Protein Serine-Threonine Kinases hpo protein, Drosophila
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Zecca Myriam
Howard Hughes Medical Institute, Columbia University College of Physicians and Surgeons, New York, New York, USA.
Struhl Gary
Conflict of Interest

The authors have declared that no competing interests exist.

References (70)
70 references, click to expand
  1. The Salvador-Warts-Hippo pathway - an emerging tumour-suppressor network.
    Nat Rev Cancer. 2007 Mar;7(3):182-91 PMID: 17318211
  2. The tumor-suppressor gene fat controls tissue growth upstream of expanded in the hippo signaling pathway.
    Curr Biol. 2006 Nov 7;16(21):2081-9 PMID: 16996266
  3. Interactions between Fat and Dachsous and the regulation of planar cell polarity in the Drosophila wing.
    Development. 2004 Aug;131(15):3785-94 PMID: 15240556
  4. Targeted expression of the signaling molecule decapentaplegic induces pattern duplications and growth alterations in Drosophila wings.
    EMBO J. 1994 Oct 3;13(19):4459-68 PMID: 7925288
  5. The Vestigial and Scalloped proteins act together to directly regulate wing-specific gene expression in Drosophila.
    Genes Dev. 1998 Dec 15;12(24):3900-9 PMID: 9869643
  6. Planar cell polarity in the Drosophila eye is directed by graded Four-jointed and Dachsous expression.
    Development. 2004 Dec;131(24):6175-84 PMID: 15548581
  7. The TEAD/TEF family of transcription factor Scalloped mediates Hippo signaling in organ size control.
    Dev Cell. 2008 Mar;14(3):377-87 PMID: 18258485
  8. Compartment boundaries and the control of Drosophila limb pattern by hedgehog protein.
    Nature. 1994 Mar 17;368(6468):208-14 PMID: 8145818
  9. Targeted gene expression as a means of altering cell fates and generating dominant phenotypes.
    Development. 1993 Jun;118(2):401-15 PMID: 8223268
  10. Cleavage and secretion is not required for Four-jointed function in Drosophila patterning.
    Development. 2004 Feb;131(4):881-90 PMID: 14757640
  11. four-jointed is required for intermediate growth in the proximal-distal axis in Drosophila.
    Development. 1995 Sep;121(9):2767-77 PMID: 7555705
  12. Wingless promotes proliferative growth in a gradient-independent manner.
    Sci Signal. 2009 Oct 06;2(91):ra60 PMID: 19809090
  13. The Fat and Warts signaling pathways: new insights into their regulation, mechanism and conservation.
    Development. 2008 Sep;135(17):2827-38 PMID: 18697904
  14. Wingless transduction by the Frizzled and Frizzled2 proteins of Drosophila.
    Development. 1999 Dec;126(23):5441-52 PMID: 10556068
  15. Mosaic analysis with a repressible cell marker for studies of gene function in neuronal morphogenesis.
    Neuron. 1999 Mar;22(3):451-61 PMID: 10197526
  16. The cadherins fat and dachsous regulate dorsal/ventral signaling in the Drosophila eye.
    Curr Biol. 2002 Jun 25;12(12):1021-6 PMID: 12123577
  17. Action of fat, four-jointed, dachsous and dachs in distal-to-proximal wing signaling.
    Development. 2004 Sep;131(18):4489-500 PMID: 15342474
  18. Wing formation in Drosophila melanogaster requires decapentaplegic gene function along the anterior-posterior compartment boundary.
    Mech Dev. 1990 Dec;33(1):69-82 PMID: 2129012
  19. The fat cadherin acts through the hippo tumor-suppressor pathway to regulate tissue size.
    Curr Biol. 2006 Nov 7;16(21):2090-100 PMID: 16996265
  20. Nonautonomous planar polarity patterning in Drosophila: dishevelled-independent functions of frizzled.
    Dev Cell. 2002 Dec;3(6):851-63 PMID: 12479810
  21. Fidelity in planar cell polarity signalling.
    Nature. 2003 Jan 30;421(6922):543-7 PMID: 12540853
  22. Delineation of a Fat tumor suppressor pathway.
    Nat Genet. 2006 Oct;38(10):1142-50 PMID: 16980976
  23. The Hippo signaling pathway components Lats and Yap pattern Tead4 activity to distinguish mouse trophectoderm from inner cell mass.
    Dev Cell. 2009 Mar;16(3):398-410 PMID: 19289085
  24. The Hippo pathway regulates the bantam microRNA to control cell proliferation and apoptosis in Drosophila.
    Cell. 2006 Aug 25;126(4):767-74 PMID: 16923395
  25. Growth regulation by Dpp: an essential role for Brinker and a non-essential role for graded signaling levels.
    Development. 2008 Dec;135(24):4003-13 PMID: 19029041
  26. Direct and long-range action of a wingless morphogen gradient.
    Cell. 1996 Nov 29;87(5):833-44 PMID: 8945511
  27. Boundaries of Dachsous Cadherin activity modulate the Hippo signaling pathway to induce cell proliferation.
    Proc Natl Acad Sci U S A. 2008 Sep 30;105(39):14897-902 PMID: 18809931
  28. Integration of positional signals and regulation of wing formation and identity by Drosophila vestigial gene.
    Nature. 1996 Jul 11;382(6587):133-8 PMID: 8700202
  29. Organization of wing formation and induction of a wing-patterning gene at the dorsal/ventral compartment boundary.
    Nature. 1994 Mar 24;368(6469):299-305 PMID: 8127364
  30. Activation and function of Notch at the dorsal-ventral boundary of the wing imaginal disc.
    Development. 1996 Jan;122(1):359-69 PMID: 8565848
  31. Decapentaplegic: a gene complex affecting morphogenesis in Drosophila melanogaster.
    Cell. 1982 Mar;28(3):451-61 PMID: 6804094
  32. Fat cadherin modulates organ size in Drosophila via the Salvador/Warts/Hippo signaling pathway.
    Curr Biol. 2006 Nov 7;16(21):2101-10 PMID: 17045801
  33. Developmental compartments and planar polarity in Drosophila.
    Curr Biol. 2002 Jul 23;12(14):1189-98 PMID: 12176328
  34. Dachs: an unconventional myosin that functions downstream of Fat to regulate growth, affinity and gene expression in Drosophila.
    Development. 2006 Jul;133(13):2539-51 PMID: 16735478
  35. The role of apterous in the control of dorsoventral compartmentalization and PS integrin gene expression in the developing wing of Drosophila.
    Development. 1994 Jul;120(7):1805-15 PMID: 7924988
  36. Binding of the Vestigial co-factor switches the DNA-target selectivity of the Scalloped selector protein.
    Development. 2001 Sep;128(17):3295-305 PMID: 11546746
  37. Interaction between dorsal and ventral cells in the imaginal disc directs wing development in Drosophila.
    Cell. 1993 Nov 19;75(4):741-52 PMID: 8242746
  38. Mosaic analysis using FLP recombinase.
    Methods Cell Biol. 1994;44:655-81 PMID: 7707974
  39. Separating the adhesive and signaling functions of the Fat and Dachsous protocadherins.
    Development. 2006 Jun;133(12):2315-24 PMID: 16687445
  40. Protein kinase A and hedgehog signaling in Drosophila limb development.
    Cell. 1995 Feb 24;80(4):563-72 PMID: 7867064
  41. YAP regulates neural progenitor cell number via the TEA domain transcription factor.
    Genes Dev. 2008 Dec 1;22(23):3320-34 PMID: 19015275
  42. Molecular interactions between Vestigial and Scalloped promote wing formation in Drosophila.
    Genes Dev. 1998 Dec 15;12(24):3815-20 PMID: 9869635
  43. Measuring dimensions: the regulation of size and shape.
    Development. 2000 Jul;127(14):2977-87 PMID: 10862736
  44. Long-range action of Wingless organizes the dorsal-ventral axis of the Drosophila wing.
    Development. 1997 Feb;124(4):871-80 PMID: 9043068
  45. Site-specific recombination between homologous chromosomes in Drosophila.
    Science. 1991 May 17;252(5008):958-61 PMID: 2035025
  46. Sequential organizing activities of engrailed, hedgehog and decapentaplegic in the Drosophila wing.
    Development. 1995 Aug;121(8):2265-78 PMID: 7671794
  47. Two separate molecular systems, Dachsous/Fat and Starry night/Frizzled, act independently to confer planar cell polarity.
    Development. 2006 Nov;133(22):4561-72 PMID: 17075008
  48. Compartments and appendage development in Drosophila.
    Bioessays. 1995 Apr;17(4):299-309 PMID: 7741723
  49. Planar cell polarity: one or two pathways?
    Nat Rev Genet. 2007 Jul;8(7):555-63 PMID: 17563758
  50. Dorsal-ventral signaling in limb development.
    Curr Opin Cell Biol. 1997 Dec;9(6):867-76 PMID: 9425353
  51. Regulation of Frizzled by fat-like cadherins during planar polarity signaling in the Drosophila compound eye.
    Cell. 2002 Mar 8;108(5):675-88 PMID: 11893338
  52. Two distinct mechanisms for long-range patterning by Decapentaplegic in the Drosophila wing.
    Nature. 1996 May 30;381(6581):387-93 PMID: 8632795
  53. The TEAD/TEF family protein Scalloped mediates transcriptional output of the Hippo growth-regulatory pathway.
    Dev Cell. 2008 Mar;14(3):388-98 PMID: 18258486
  54. Drosophila Mad binds to DNA and directly mediates activation of vestigial by Decapentaplegic.
    Nature. 1997 Jul 17;388(6639):304-8 PMID: 9230443
  55. Direct and long-range action of a DPP morphogen gradient.
    Cell. 1996 May 3;85(3):357-68 PMID: 8616891
  56. The Hippo signaling pathway coordinately regulates cell proliferation and apoptosis by inactivating Yorkie, the Drosophila Homolog of YAP.
    Cell. 2005 Aug 12;122(3):421-34 PMID: 16096061
  57. SCALLOPED interacts with YORKIE, the nuclear effector of the hippo tumor-suppressor pathway in Drosophila.
    Curr Biol. 2008 Mar 25;18(6):435-41 PMID: 18313299
  58. Morphogen control of wing growth through the Fat signaling pathway.
    Dev Cell. 2008 Aug;15(2):309-21 PMID: 18694569
  59. Do the protocadherins Fat and Dachsous link up to determine both planar cell polarity and the dimensions of organs?
    Nat Cell Biol. 2008 Dec;10(12):1379-82 PMID: 19043429
  60. Mutations in the cadherin superfamily member gene dachsous cause a tissue polarity phenotype by altering frizzled signaling.
    Development. 1998 Mar;125(5):959-68 PMID: 9449678
  61. Regulation of cell proliferation by a morphogen gradient.
    Cell. 2005 Nov 4;123(3):449-61 PMID: 16269336
  62. Control of Drosophila wing growth by the vestigial quadrant enhancer.
    Development. 2007 Aug;134(16):3011-20 PMID: 17634191
  63. YAP1 increases organ size and expands undifferentiated progenitor cells.
    Curr Biol. 2007 Dec 4;17(23):2054-60 PMID: 17980593
  64. wingless refines its own expression domain on the Drosophila wing margin.
    Nature. 1996 Nov 7;384(6604):72-4 PMID: 8900280
  65. Serrate signals through Notch to establish a Wingless-dependent organizer at the dorsal/ventral compartment boundary of the Drosophila wing.
    Development. 1995 Dec;121(12):4215-25 PMID: 8575321
  66. Four-jointed is a Golgi kinase that phosphorylates a subset of cadherin domains.
    Science. 2008 Jul 18;321(5887):401-4 PMID: 18635802
  67. The bantam microRNA is a target of the hippo tumor-suppressor pathway.
    Curr Biol. 2006 Oct 10;16(19):1895-904 PMID: 16949821
  68. Recruitment of cells into the Drosophila wing primordium by a feed-forward circuit of vestigial autoregulation.
    Development. 2007 Aug;134(16):3001-10 PMID: 17634192
  69. Organizing activity of wingless protein in Drosophila.
    Cell. 1993 Feb 26;72(4):527-40 PMID: 8440019
  70. From cell structure to transcription: Hippo forges a new path.
    Cell. 2006 Jan 27;124(2):267-73 PMID: 16439203
Article Info
Journal
PLoS biology
Abbr.
PLoS Biol
ISSN
1545-7885
Published
2010-06-01
Epub
2010-00-01
Pages
e1000386
Language
English
Region
United States
NLM ID
101183755
PMCID
PMC2879410
Subset
IM
Grants
Howard Hughes Medical Institute · United States
Corrections
CommentIn
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