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Items: 1 to 50 of 57

1.

Intracellular Signals Activated by Canonical Wnt Ligands Independent of GSK3 Inhibition and β-Catenin Stabilization.

García de Herreros A, Duñach M.

Cells. 2019 Sep 25;8(10). pii: E1148. doi: 10.3390/cells8101148. Review.

2.

Src and Fyn define a new signaling cascade activated by canonical and non-canonical Wnt ligands and required for gene transcription and cell invasion.

Villarroel A, Del Valle-Pérez B, Fuertes G, Curto J, Ontiveros N, Garcia de Herreros A, Duñach M.

Cell Mol Life Sci. 2019 Jul 16. doi: 10.1007/s00018-019-03221-2. [Epub ahead of print]

PMID:
31312879
3.

CK1ε and p120-catenin control Ror2 function in noncanonical Wnt signaling.

Curto J, Del Valle-Pérez B, Villarroel A, Fuertes G, Vinyoles M, Peña R, García de Herreros A, Duñach M.

Mol Oncol. 2018 May;12(5):611-629. doi: 10.1002/1878-0261.12184. Epub 2018 Mar 14.

4.

Down-regulation of the Wnt/β-catenin signaling pathway by Cacnb4.

Rima M, Daghsni M, Lopez A, Fajloun Z, Lefrancois L, Dunach M, Mori Y, Merle P, Brusés JL, De Waard M, Ronjat M.

Mol Biol Cell. 2017 Dec 1;28(25):3699-3708. doi: 10.1091/mbc.E17-01-0076. Epub 2017 Oct 11.

5.

Activation of CK1ɛ by PP2A/PR61ɛ is required for the initiation of Wnt signaling.

Vinyoles M, Del Valle-Pérez B, Curto J, Padilla M, Villarroel A, Yang J, de Herreros AG, Duñach M.

Oncogene. 2017 Aug 10;36(32):4670. doi: 10.1038/onc.2017.84. Epub 2017 Apr 3.

PMID:
28368396
6.

p120-catenin in canonical Wnt signaling.

Duñach M, Del Valle-Pérez B, García de Herreros A.

Crit Rev Biochem Mol Biol. 2017 Jun;52(3):327-339. doi: 10.1080/10409238.2017.1295920. Epub 2017 Mar 3. Review.

PMID:
28276699
7.

β-Catenin and plakoglobin N- and C-tails determine ligand specificity.

Solanas G, Miravet S, Casagolda D, Castaño J, Raurell I, Corrionero A, García de Herreros A, Duñach M.

J Biol Chem. 2016 Nov 11;291(46):23925-23927. No abstract available.

8.

The transcriptional factor Tcf-4 contains different binding sites for β-catenin and plakoglobin.

Miravet S, Piedra J, Miró F, Itarte E, García de Herreros A, Duñach M.

J Biol Chem. 2016 Sep 2;291(36):18854. doi: 10.1074/jbc.A116.110248. No abstract available.

9.

Correction: Gamma-Secretase-Dependent and -Independent Effects of Presenilin1 on β-Catenin·Tcf-4 Transcriptional Activity.

Raurell I, Codina M, Casagolda D, Del Valle B, Baulida J, de Herreros AG, Duñach M.

PLoS One. 2016 Aug 15;11(8):e0161515. doi: 10.1371/journal.pone.0161515. eCollection 2016.

10.

Activation of CK1ɛ by PP2A/PR61ɛ is required for the initiation of Wnt signaling.

Vinyoles M, Del Valle-Pérez B, Curto J, Padilla M, Villarroel A, Yang J, de Herreros AG, Duñach M.

Oncogene. 2017 Jan 19;36(3):429-438. doi: 10.1038/onc.2016.209. Epub 2016 Jun 20. Erratum in: Oncogene. 2017 Aug 10;36(32):4670.

11.

Upon Wnt stimulation, Rac1 activation requires Rac1 and Vav2 binding to p120-catenin.

Valls G, Codina M, Miller RK, Del Valle-Pérez B, Vinyoles M, Caelles C, McCrea PD, de Herreros AG, Duñach M.

J Cell Sci. 2016 May 15;129(10):2120-3. doi: 10.1242/jcs.190470. No abstract available.

12.

Wnt controls the transcriptional activity of Kaiso through CK1ε-dependent phosphorylation of p120-catenin.

del Valle-Pérez B, Casagolda D, Lugilde E, Valls G, Codina M, Dave N, García de Herreros A, Duñach M.

J Cell Sci. 2016 Feb 15;129(4):873. doi: 10.1242/jcs.186288. No abstract available.

13.

Multivesicular GSK3 sequestration upon Wnt signaling is controlled by p120-catenin/cadherin interaction with LRP5/6.

Vinyoles M, Del Valle-Pérez B, Curto J, Viñas-Castells R, Alba-Castellón L, García de Herreros A, Duñach M.

Mol Cell. 2014 Feb 6;53(3):444-57. doi: 10.1016/j.molcel.2013.12.010. Epub 2014 Jan 9.

14.

Upon Wnt stimulation, Rac1 activation requires Rac1 and Vav2 binding to p120-catenin.

Valls G, Codina M, Miller RK, Del Valle-Pérez B, Vinyoles M, Caelles C, McCrea PD, García de Herreros A, Duñach M.

J Cell Sci. 2012 Nov 15;125(Pt 22):5288-301. doi: 10.1242/jcs.101030. Epub 2012 Sep 3. Erratum in: J Cell Sci. 2016 May 15;129(10 ):2120-3.

15.

Akt2 interacts with Snail1 in the E-cadherin promoter.

Villagrasa P, Díaz VM, Viñas-Castells R, Peiró S, Del Valle-Pérez B, Dave N, Rodríguez-Asiain A, Casal JI, Lizcano JM, Duñach M, García de Herreros A.

Oncogene. 2012 Sep 6;31(36):4022-33. doi: 10.1038/onc.2011.562. Epub 2011 Dec 12.

PMID:
22158034
16.

Wnt controls the transcriptional activity of Kaiso through CK1ε-dependent phosphorylation of p120-catenin.

Del Valle-Pérez B, Casagolda D, Lugilde E, Valls G, Codina M, Dave N, de Herreros AG, Duñach M.

J Cell Sci. 2011 Jul 1;124(Pt 13):2298-309. doi: 10.1242/jcs.082693. Erratum in: J Cell Sci. 2016 Feb 15;129(4):873.

17.

Coordinated action of CK1 isoforms in canonical Wnt signaling.

Del Valle-Pérez B, Arqués O, Vinyoles M, de Herreros AG, Duñach M.

Mol Cell Biol. 2011 Jul;31(14):2877-88. doi: 10.1128/MCB.01466-10. Epub 2011 May 23.

18.

A p120-catenin-CK1epsilon complex regulates Wnt signaling.

Casagolda D, Del Valle-Pérez B, Valls G, Lugilde E, Vinyoles M, Casado-Vela J, Solanas G, Batlle E, Reynolds AB, Casal JI, de Herreros AG, Duñach M.

J Cell Sci. 2010 Aug 1;123(Pt 15):2621-31. doi: 10.1242/jcs.067512.

19.

Jagged1 is the pathological link between Wnt and Notch pathways in colorectal cancer.

Rodilla V, Villanueva A, Obrador-Hevia A, Robert-Moreno A, Fernández-Majada V, Grilli A, López-Bigas N, Bellora N, Albà MM, Torres F, Duñach M, Sanjuan X, Gonzalez S, Gridley T, Capella G, Bigas A, Espinosa L.

Proc Natl Acad Sci U S A. 2009 Apr 14;106(15):6315-20. doi: 10.1073/pnas.0813221106. Epub 2009 Mar 26.

20.

Gamma-secretase-dependent and -independent effects of presenilin1 on beta-catenin.Tcf-4 transcriptional activity.

Raurell I, Codina M, Casagolda D, Del Valle B, Baulida J, de Herreros AG, Duñach M.

PLoS One. 2008;3(12):e4080. doi: 10.1371/journal.pone.0004080. Epub 2008 Dec 30. Erratum in: PLoS One. 2016;11(8):e0161515.

21.

RhoA-ROCK and p38MAPK-MSK1 mediate vitamin D effects on gene expression, phenotype, and Wnt pathway in colon cancer cells.

Ordóñez-Morán P, Larriba MJ, Pálmer HG, Valero RA, Barbáchano A, Duñach M, de Herreros AG, Villalobos C, Berciano MT, Lafarga M, Muñoz A.

J Cell Biol. 2008 Nov 17;183(4):697-710. doi: 10.1083/jcb.200803020.

22.

Signalling by neurotrophins and hepatocyte growth factor regulates axon morphogenesis by differential beta-catenin phosphorylation.

David MD, Yeramian A, Duñach M, Llovera M, Cantí C, de Herreros AG, Comella JX, Herreros J.

J Cell Sci. 2008 Aug 15;121(Pt 16):2718-30. doi: 10.1242/jcs.029660. Epub 2008 Jul 29.

23.

E-cadherin controls beta-catenin and NF-kappaB transcriptional activity in mesenchymal gene expression.

Solanas G, Porta-de-la-Riva M, Agustí C, Casagolda D, Sánchez-Aguilera F, Larriba MJ, Pons F, Peiró S, Escrivà M, Muñoz A, Duñach M, de Herreros AG, Baulida J.

J Cell Sci. 2008 Jul 1;121(Pt 13):2224-34. doi: 10.1242/jcs.021667.

24.

A novel RET kinase-beta-catenin signaling pathway contributes to tumorigenesis in thyroid carcinoma.

Gujral TS, van Veelen W, Richardson DS, Myers SM, Meens JA, Acton DS, Duñach M, Elliott BE, Höppener JW, Mulligan LM.

Cancer Res. 2008 Mar 1;68(5):1338-46. doi: 10.1158/0008-5472.CAN-07-6052.

25.

Bcr-Abl stabilizes beta-catenin in chronic myeloid leukemia through its tyrosine phosphorylation.

Coluccia AM, Vacca A, Duñach M, Mologni L, Redaelli S, Bustos VH, Benati D, Pinna LA, Gambacorti-Passerini C.

EMBO J. 2007 Mar 7;26(5):1456-66. Epub 2007 Feb 22.

26.

Specific phosphorylation of p120-catenin regulatory domain differently modulates its binding to RhoA.

Castaño J, Solanas G, Casagolda D, Raurell I, Villagrasa P, Bustelo XR, García de Herreros A, Duñach M.

Mol Cell Biol. 2007 Mar;27(5):1745-57. Epub 2006 Dec 28.

27.

Presenilin-1 interacts with plakoglobin and enhances plakoglobin-Tcf-4 association. Implications for the regulation of beta-catenin/Tcf-4-dependent transcription.

Raurell I, Castaño J, Francí C, García de Herreros A, Duñach M.

J Biol Chem. 2006 Jan 20;281(3):1401-11. Epub 2005 Nov 23. Retraction in: J Biol Chem. 2016 May 20;291(21):11464.

28.

beta-Catenin and plakoglobin N- and C-tails determine ligand specificity.

Solanas G, Miravet S, Casagolda D, Castaño J, Raurell I, Corrionero A, de Herreros AG, Duñach M.

J Biol Chem. 2004 Nov 26;279(48):49849-56. Epub 2004 Sep 20. Erratum in: J Biol Chem. 2016 Nov 11;291(46):23925-23927.

29.

Tyrosine phosphorylation of plakoglobin causes contrary effects on its association with desmosomes and adherens junction components and modulates beta-catenin-mediated transcription.

Miravet S, Piedra J, Castaño J, Raurell I, Francí C, Duñach M, García de Herreros A.

Mol Cell Biol. 2003 Oct;23(20):7391-402.

30.

APC 3 x 15 beta-catenin-binding domain potentiates beta-catenin association to TBP and upregulates TCF-4 transcriptional activity.

Roura S, Martínez D, Piedra J, Miravet S, García de Herreros A, Duñach M.

Biochem Biophys Res Commun. 2003 Oct 3;309(4):830-5.

PMID:
13679048
31.

p120 Catenin-associated Fer and Fyn tyrosine kinases regulate beta-catenin Tyr-142 phosphorylation and beta-catenin-alpha-catenin Interaction.

Piedra J, Miravet S, Castaño J, Pálmer HG, Heisterkamp N, García de Herreros A, Duñach M.

Mol Cell Biol. 2003 Apr;23(7):2287-97.

32.

Beta-catenin N- and C-terminal tails modulate the coordinated binding of adherens junction proteins to beta-catenin.

Castaño J, Raurell I, Piedra JA, Miravet S, Duñach M, García de Herreros A.

J Biol Chem. 2002 Aug 30;277(35):31541-50. Epub 2002 Jun 20. Retraction in: J Biol Chem. 2016 May 20;291(21):11462.

33.

The transcriptional factor Tcf-4 contains different binding sites for beta-catenin and plakoglobin.

Miravet S, Piedra J, Miró F, Itarte E, García de Herreros A, Duñach M.

J Biol Chem. 2002 Jan 18;277(3):1884-91. Epub 2001 Nov 15. Erratum in: J Biol Chem. 2016 Sep 2;291(36):18854.

34.

Regulation of beta-catenin structure and activity by tyrosine phosphorylation.

Piedra J, Martinez D, Castano J, Miravet S, Dunach M, de Herreros AG.

J Biol Chem. 2001 Jun 8;276(23):20436-43. Epub 2001 Mar 13. Retraction in: J Biol Chem. 2016 May 20;291(21):11463.

35.
36.
37.

Regulation of E-cadherin/Catenin association by tyrosine phosphorylation.

Roura S, Miravet S, Piedra J, García de Herreros A, Duñach M.

J Biol Chem. 1999 Dec 17;274(51):36734-40.

38.

Nucleotide and Mg2+ dependency of the thermal denaturation of mitochondrial F1-ATPase.

Villaverde J, Cladera J, Hartog A, Berden J, Padrós E, Duñach M.

Biophys J. 1998 Oct;75(4):1980-8.

39.

Experimental and theoretical characterization of the high-affinity cation-binding site of the purple membrane.

Pardo L, Sepulcre F, Cladera J, Duñach M, Labarta A, Tejada J, Padrós E.

Biophys J. 1998 Aug;75(2):777-84.

40.

Effect of nucleotides on the thermal stability and on the deuteration kinetics of the thermophilic F0F1 ATP synthase.

Villaverde J, Cladera J, Padrós E, Rigaud JL, Duñach M.

Eur J Biochem. 1997 Mar 1;244(2):441-8.

41.

Liposome solubilization and membrane protein reconstitution using Chaps and Chapso.

Cladera J, Rigaud JL, Villaverde J, Duñach M.

Eur J Biochem. 1997 Feb 1;243(3):798-804.

42.
46.

Influence of nucleotides on the secondary structure and on the thermal stability of mitochondrial F1 visualized by infrared spectroscopy.

Cladera J, Villaverde J, Hartog AF, Padrós E, Berden JA, Rigaud JL, Duñach M.

FEBS Lett. 1995 Sep 4;371(2):115-8.

47.
48.

Ultraviolet-visible transient spectroscopy of bacteriorhodopsin mutants. Evidence for two forms of tyrosine-185----phenylalanine.

Duñach M, Berkowitz S, Marti T, He YW, Subramaniam S, Khorana HG, Rothschild KJ.

J Biol Chem. 1990 Oct 5;265(28):16978-84.

49.

Substitution of membrane-embedded aspartic acids in bacteriorhodopsin causes specific changes in different steps of the photochemical cycle.

Stern LJ, Ahl PL, Marti T, Mogi T, Duñach M, Berkowitz S, Rothschild KJ, Khorana HG.

Biochemistry. 1989 Dec 26;28(26):10035-42.

PMID:
2575917
50.

Fourier-transform infrared studies on cation binding to native and modified purple membranes.

Duñach M, Padrós E, Muga A, Arrondo JL.

Biochemistry. 1989 Oct 31;28(22):8940-5.

PMID:
2605235

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