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Publications indexed to the term Wnt Signaling Pathway

FacultyTitle
1Transcriptome Profiling of the Hippocampal Seizure Network Implicates a Role for Wnt Signaling during Epileptogenesis in a Mouse Model of Temporal Lobe Epilepsy. (Mardones MD, Gupta K) Int J Mol Sci 2022 Oct 10;23(19)       6 Citations
1Optimizing the Differentiation of Cardiomyocytes from Human Induced Pluripotent-Derived Stem Cells. (Gartz M, Strande JL) Methods Mol Biol 2021;2319:51-60    
1Inhibiting β-catenin disables nucleolar functions in triple-negative breast cancer. (Weeks SE, Kammerud SC, Metge BJ, AlSheikh HA, Schneider DA, Chen D, Wei S, Mobley JA, Ojesina AI, Shevde LA, Samant RS) Cell Death Dis 2021 Mar 04;12(3):242       10 Citations
1KPT-330 Prevents Aortic Valve Calcification via a Novel C/EBPβ Signaling Pathway. (Dutta P, Kodigepalli KM, LaHaye S, Thompson JW, Rains S, Nagel C, Thatcher K, Hinton RB, Lincoln J) Circ Res 2021 Apr 30;128(9):1300-1316       9 Citations
1Loss of ADAMTS19 causes progressive non-syndromic heart valve disease. (Wünnemann F, Ta-Shma A, Preuss C, Leclerc S, van Vliet PP, Oneglia A, Thibeault M, Nordquist E, Lincoln J, Scharfenberg F, Becker-Pauly C, Hofmann P, Hoff K, Audain E, Kramer HH, Makalowski W, Nir A, Gerety SS, Hurles M, Comes J, Fournier A, Osinska H, Robins J, Pucéat M, MIBAVA Leducq Consortium principal investigators, Elpeleg O, Hitz MP, Andelfinger G) Nat Genet 2020 Jan;52(1):40-47       40 Citations
1Neuronal network remodeling and Wnt pathway dysregulation in the intra-hippocampal kainate mouse model of temporal lobe epilepsy. (Gupta K, Schnell E) PLoS One 2019;14(10):e0215789       10 Citations
1Long non-coding RNA00882 contributes to platelet-derived growth factor-induced proliferation of human fetal airway smooth muscle cells by enhancing Wnt/β-catenin signaling via sponging miR-3619-5p. (Liu Z, Mei L, He Z) Biochem Biophys Res Commun 2019 Jun 18;514(1):9-15       16 Citations
2Regeneration of the zebrafish retinal pigment epithelium after widespread genetic ablation. (Hanovice NJ, Leach LL, Slater K, Gabriel AE, Romanovicz D, Shao E, Collery R, Burton EA, Lathrop KL, Link BA, Gross JM) PLoS Genet 2019 Jan;15(1):e1007939       33 Citations
4PITX2 deficiency and associated human disease: insights from the zebrafish model. (Hendee KE, Sorokina EA, Muheisen SS, Reis LM, Tyler RC, Markovic V, Cuturilo G, Link BA, Semina EV) Hum Mol Genet 2018 May 15;27(10):1675-1695       44 Citations
1Targeting the Wnt/beta-catenin pathway in cancer: Update on effectors and inhibitors. (Krishnamurthy N, Kurzrock R) Cancer Treat Rev 2018 Jan;62:50-60       720 Citations
1Ottogi Inhibits Wnt/β-catenin Signaling by Regulating Cell Membrane Trafficking of Frizzled8. (Kim HT, Lee MS, Jeong YM, Ro H, Kim DI, Shin YH, Kim JE, Hwang KS, Choi JH, Bahn M, Lee JJ, Lee SH, Bae YK, Lee JS, Choi JK, Kim NS, Yeo CY, Kim CH) Sci Rep 2017 Oct 16;7(1):13278       4 Citations
1Coordination of Heparan Sulfate Proteoglycans with Wnt Signaling To Control Cellular Migrations and Positioning in Caenorhabditis elegans. (Saied-Santiago K, Townley RA, Attonito JD, da Cunha DS, Díaz-Balzac CA, Tecle E, Bülow HE) Genetics 2017 Aug;206(4):1951-1967       21 Citations
1Human Cytomegalovirus Inhibits the PARsylation Activity of Tankyrase--A Potential Strategy for Suppression of the Wnt Pathway. (Roy S, Liu F, Arav-Boger R) Viruses 2015 Dec 29;8(1)       14 Citations
1The canonical Wnt pathway regulates the metastasis-promoting mucin MUC4 in pancreatic ductal adenocarcinoma. (Pai P, Rachagani S, Lakshmanan I, Macha MA, Sheinin Y, Smith LM, Ponnusamy MP, Batra SK) Mol Oncol 2016 Feb;10(2):224-39       27 Citations
2Wnt/β-Catenin Signaling Activation beyond Robust Nuclear β-Catenin Accumulation in Nondysplastic Barrett's Esophagus: Regulation via Dickkopf-1. (Lyros O, Rafiee P, Nie L, Medda R, Jovanovic N, Otterson MF, Behmaram B, Gockel I, Mackinnon A, Shaker R) Neoplasia 2015 Jul;17(7):598-611       16 Citations
2IQGAP1: insights into the function of a molecular puppeteer. (Abel AM, Schuldt KM, Rajasekaran K, Hwang D, Riese MJ, Rao S, Thakar MS, Malarkannan S) Mol Immunol 2015 Jun;65(2):336-49       57 Citations
1Hippocampal Wnt Signaling: Memory Regulation and Hormone Interactions. (Fortress AM, Frick KM) Neuroscientist 2016 Jun;22(3):278-94       57 Citations
1The mTOR and canonical Wnt signaling pathways mediate the mnemonic effects of progesterone in the dorsal hippocampus. (Fortress AM, Heisler JD, Frick KM) Hippocampus 2015 May;25(5):616-29       24 Citations
1IUGR disrupts the PPARγ-Setd8-H4K20me(1) and Wnt signaling pathways in the juvenile rat hippocampus. (Ke X, Xing B, Yu B, Yu X, Majnik A, Cohen S, Lane R, Joss-Moore L) Int J Dev Neurosci 2014 Nov;38:59-67       23 Citations
1O-GlcNAcylation stabilizes β-catenin through direct competition with phosphorylation at threonine 41. (Olivier-Van Stichelen S, Dehennaut V, Buzy A, Zachayus JL, Guinez C, Mir AM, El Yazidi-Belkoura I, Copin MC, Boureme D, Loyaux D, Ferrara P, Lefebvre T) FASEB J 2014 Aug;28(8):3325-38       113 Citations
1Dickkopf-1, the Wnt antagonist, is induced by acidic pH and mediates epithelial cellular senescence in human reflux esophagitis. (Lyros O, Rafiee P, Nie L, Medda R, Jovanovic N, Schmidt J, Mackinnon A, Venu N, Shaker R) Am J Physiol Gastrointest Liver Physiol 2014 Apr 01;306(7):G557-74       25 Citations
1Wnt modulating agents inhibit human cytomegalovirus replication. (Kapoor A, He R, Venkatadri R, Forman M, Arav-Boger R) Antimicrob Agents Chemother 2013 Jun;57(6):2761-7       44 Citations
1Plasma DNA methylation of Wnt antagonists predicts recurrence of esophageal squamous cell carcinoma. (Liu JB, Qiang FL, Dong J, Cai J, Zhou SH, Shi MX, Chen KP, Hu ZB) World J Gastroenterol 2011 Nov 28;17(44):4917-21       49 Citations
1The hexosamine biosynthetic pathway and O-GlcNAcylation drive the expression of β-catenin and cell proliferation. (Olivier-Van Stichelen S, Guinez C, Mir AM, Perez-Cervera Y, Liu C, Michalski JC, Lefebvre T) Am J Physiol Endocrinol Metab 2012 Feb 15;302(4):E417-24       56 Citations
1Wnt signaling mediates pathological vascular growth in proliferative retinopathy. (Chen J, Stahl A, Krah NM, Seaward MR, Dennison RJ, Sapieha P, Hua J, Hatton CJ, Juan AM, Aderman CM, Willett KL, Guerin KI, Mammoto A, Campbell M, Smith LE) Circulation 2011 Oct 25;124(17):1871-81       102 Citations