Literature DB >> 27647915

Mechanism of inhibition of the tumor suppressor Patched by Sonic Hedgehog.

Hanna Tukachinsky1, Kostadin Petrov1, Miyako Watanabe1, Adrian Salic2.   

Abstract

The Hedgehog cell-cell signaling pathway is crucial for animal development, and its misregulation is implicated in numerous birth defects and cancers. In unstimulated cells, pathway activity is inhibited by the tumor suppressor membrane protein, Patched. Hedgehog signaling is triggered by the secreted Hedgehog ligand, which binds and inhibits Patched, thus setting in motion the downstream events in signal transduction. Despite its critical importance, the mechanism by which Hedgehog antagonizes Patched has remained unknown. Here, we show that vertebrate Patched1 inhibition is caused by direct, palmitate-dependent interaction with the Sonic Hedgehog ligand. We find that a short palmitoylated N-terminal fragment of Sonic Hedgehog binds Patched1 and, strikingly, is sufficient to inhibit it and to activate signaling. The rest of Sonic Hedgehog confers high-affinity Patched1 binding and internalization through a distinct binding site, but, surprisingly, it is not absolutely required for signaling. The palmitate-dependent interaction with Patched1 is specifically impaired in a Sonic Hedgehog mutant causing human holoprosencephaly, the most frequent congenital brain malformation, explaining its drastically reduced potency. The palmitate-dependent interaction is also abolished in constitutively inhibited Patched1 point mutants causing the Gorlin cancer syndrome, suggesting that they might adopt a conformation distinct from the wild type. Our data demonstrate that Sonic Hedgehog signals via the palmitate-dependent arm of a two-pronged contact with Patched1. Furthermore, our results suggest that, during Hedgehog signaling, ligand binding inhibits Patched by trapping it in an inactive conformation, a mechanism that explains the dramatically reduced activity of oncogenic Patched1 mutants.

Entities:  

Keywords:  Hedgehog; Patched; lipid; palmitate; signaling

Mesh:

Substances:

Year:  2016        PMID: 27647915      PMCID: PMC5056095          DOI: 10.1073/pnas.1606719113

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  37 in total

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2.  Structural insights into proteoglycan-shaped Hedgehog signaling.

Authors:  Daniel M Whalen; Tomas Malinauskas; Robert J C Gilbert; Christian Siebold
Journal:  Proc Natl Acad Sci U S A       Date:  2013-09-23       Impact factor: 11.205

3.  The cell surface membrane proteins Cdo and Boc are components and targets of the Hedgehog signaling pathway and feedback network in mice.

Authors:  Toyoaki Tenzen; Benjamin L Allen; Francesca Cole; Jong-Sun Kang; Robert S Krauss; Andrew P McMahon
Journal:  Dev Cell       Date:  2006-04-27       Impact factor: 12.270

4.  Vertebrate Smoothened functions at the primary cilium.

Authors:  Kevin C Corbit; Pia Aanstad; Veena Singla; Andrew R Norman; Didier Y R Stainier; Jeremy F Reiter
Journal:  Nature       Date:  2005-08-31       Impact factor: 49.962

5.  Cilia and Hedgehog responsiveness in the mouse.

Authors:  Danwei Huangfu; Kathryn V Anderson
Journal:  Proc Natl Acad Sci U S A       Date:  2005-08-01       Impact factor: 11.205

6.  Palmitoylation is required for the production of a soluble multimeric Hedgehog protein complex and long-range signaling in vertebrates.

Authors:  Miao-Hsueh Chen; Ya-Jun Li; Takatoshi Kawakami; Shan-Mei Xu; Pao-Tien Chuang
Journal:  Genes Dev       Date:  2004-03-15       Impact factor: 11.361

Review 7.  Wnts and Hedgehogs: lipid-modified proteins and similarities in signaling mechanisms at the cell surface.

Authors:  Roel Nusse
Journal:  Development       Date:  2003-11       Impact factor: 6.868

8.  Patched acts catalytically to suppress the activity of Smoothened.

Authors:  J Taipale; M K Cooper; T Maiti; P A Beachy
Journal:  Nature       Date:  2002-08-22       Impact factor: 49.962

9.  Structural basis of Wnt recognition by Frizzled.

Authors:  Claudia Y Janda; Deepa Waghray; Aron M Levin; Christoph Thomas; K Christopher Garcia
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10.  Inhibitors of Hedgehog acyltransferase block Sonic Hedgehog signaling.

Authors:  Elissaveta Petrova; Jessica Rios-Esteves; Ouathek Ouerfelli; J Fraser Glickman; Marilyn D Resh
Journal:  Nat Chem Biol       Date:  2013-02-17       Impact factor: 15.040

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  44 in total

1.  Mechanism and ultrasensitivity in Hedgehog signaling revealed by Patched1 disease mutations.

Authors:  Kostadin Petrov; Taciani de Almeida Magalhaes; Adrian Salic
Journal:  Proc Natl Acad Sci U S A       Date:  2021-02-09       Impact factor: 11.205

2.  Loss-of-function mutations in FGF8 can be independent risk factors for holoprosencephaly.

Authors:  Sungkook Hong; Ping Hu; Erich Roessler; Tommy Hu; Maximilian Muenke
Journal:  Hum Mol Genet       Date:  2018-06-01       Impact factor: 6.150

3.  Hedgehog Pathway Activation Requires Coreceptor-Catalyzed, Lipid-Dependent Relay of the Sonic Hedgehog Ligand.

Authors:  Bradley M Wierbowski; Kostadin Petrov; Laura Aravena; Garrick Gu; Yangqing Xu; Adrian Salic
Journal:  Dev Cell       Date:  2020-10-09       Impact factor: 12.270

Review 4.  Mechanistic Insights into the Generation and Transduction of Hedgehog Signaling.

Authors:  Xiaofeng Qi; Xiaochun Li
Journal:  Trends Biochem Sci       Date:  2020-02-17       Impact factor: 13.807

Review 5.  Biochemical mechanisms of vertebrate hedgehog signaling.

Authors:  Jennifer H Kong; Christian Siebold; Rajat Rohatgi
Journal:  Development       Date:  2019-05-15       Impact factor: 6.868

6.  Smoothened-dependent and -independent pathways in mammalian noncanonical Hedgehog signaling.

Authors:  Alessandra V de S Faria; Adamu Ishaku Akyala; Kaushal Parikh; Lois W Brüggemann; C Arnold Spek; Wanlu Cao; Marco J Bruno; Maarten F Bijlsma; Gwenny M Fuhler; Maikel P Peppelenbosch
Journal:  J Biol Chem       Date:  2019-04-16       Impact factor: 5.157

7.  Distinct Cation Gradients Power Cholesterol Transport at Different Key Points in the Hedgehog Signaling Pathway.

Authors:  Kostadin Petrov; Bradley M Wierbowski; Jingjing Liu; Adrian Salic
Journal:  Dev Cell       Date:  2020-08-28       Impact factor: 12.270

8.  Gain-of-function Shh mutants activate Smo cell-autonomously independent of Ptch1/2 function.

Authors:  Catalina Casillas; Henk Roelink
Journal:  Mech Dev       Date:  2018-08-23       Impact factor: 1.882

9.  Smoothening out the patches.

Authors:  Anselm Sommer; Mark A Lemmon
Journal:  Science       Date:  2018-10-05       Impact factor: 47.728

10.  The protein-specific activities of the transmembrane modules of Ptch1 and Ptch2 are determined by their adjacent protein domains.

Authors:  Andrew J Fleet; Paul A Hamel
Journal:  J Biol Chem       Date:  2018-08-30       Impact factor: 5.157

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