Papers
(29)
Results 1 - 29 of 29 results
ARVCF catenin controls force production during vertebrate convergent extension. , Huebner RJ, Weng S, Lee C , Lee C , Sarıkaya S, Papoulas O, Cox RM, Marcotte EM , Wallingford JB ., Dev Cell. May 9, 2022; 57 (9): 1119-1131.e5.
Characterization of convergent thickening, a major convergence force producing morphogenic movement in amphibians. , Shook DR , Wen JWH, Rolo A, O'Hanlon M, Francica B, Dobbins D, Skoglund P , DeSimone DW , Winklbauer R , Keller RE ., Elife. April 11, 2022; 11
Generation of anisotropic strain dysregulates wild-type cell division at the interface between host and oncogenic tissue. , Moruzzi M, Nestor-Bergmann A, Goddard GK, Tarannum N, Brennan K, Woolner S ., Curr Biol. August 9, 2021; 31 (15): 3409-3418.e6.
Adherens junctions are involved in polarized contractile ring formation in dividing epithelial cells of Xenopus laevis embryos. , Hatte G, Prigent C , Tassan JP ., Exp Cell Res. May 1, 2021; 402 (1): 112525.
Capillarity and active cell movement at mesendoderm translocation in the Xenopus gastrula. , Nagel M, Barua D, Damm EW, Kashef J , Hofmann R, Ershov A, Cecilia A, Moosmann J , Baumbach T, Winklbauer R ., Development. March 29, 2021; 148 (18):
Mechanical Stress Regulates Epithelial Tissue Integrity and Stiffness through the FGFR/Erk2 Signaling Pathway during Embryogenesis. , Kinoshita N, Hashimoto Y, Yasue N, Suzuki M , Suzuki M , Cristea IM, Ueno N ., Cell Rep. March 17, 2020; 30 (11): 3875-3888.e3.
Roles for Xenopus aquaporin-3b (aqp3.L) during gastrulation: Fibrillar fibronectin and tissue boundary establishment in the dorsal margin. , Forecki J, Van Antwerp DJ, Lujan SM, Merzdorf CS ., Dev Biol. January 1, 2018; 433 (1): 3-16.
Folate receptor 1 is necessary for neural plate cell apical constriction during Xenopus neural tube formation. , Balashova OA, Visina O, Borodinsky LN ., Development. April 15, 2017; 144 (8): 1518-1530.
Actomyosin-generated tension on cadherin is similar between dividing and non-dividing epithelial cells in early Xenopus laevis embryos. , Herbomel G, Hatte G, Roul J, Padilla-Parra S, Tassan JP , Tramier M., Sci Rep. March 22, 2017; 7 45058.
EphA7 modulates apical constriction of hindbrain neuroepithelium during neurulation in Xenopus. , Wang X , Sun J, Li C, Mao B ., Biochem Biophys Res Commun. October 28, 2016; 479 (4): 759-765.
Syndecan4 coordinates Wnt/JNK and BMP signaling to regulate foregut progenitor development. , Zhang Z , Zhang Z , Rankin SA , Rankin SA , Zorn AM ., Dev Biol. August 1, 2016; 416 (1): 187-199.
Spatial regulation of cell cohesion by Wnt5a during second heart field progenitor deployment. , Li D, Sinha T, Ajima R, Seo HS, Yamaguchi TP, Wang J ., Dev Biol. April 1, 2016; 412 (1): 18-31.
E-cadherin is required for cranial neural crest migration in Xenopus laevis. , Huang C, Kratzer MC, Wedlich D , Kashef J ., Dev Biol. March 15, 2016; 411 (2): 159-171.
Molecular model for force production and transmission during vertebrate gastrulation. , Pfister K, Shook DR , Chang C , Keller R , Skoglund P ., Development. February 15, 2016; 143 (4): 715-27.
G protein-coupled receptors Flop1 and Flop2 inhibit Wnt/ β-catenin signaling and are essential for head formation in Xenopus. , Miyagi A, Negishi T, Yamamoto TS , Ueno N ., Dev Biol. November 1, 2015; 407 (1): 131-44.
A conserved Oct4/POUV-dependent network links adhesion and migration to progenitor maintenance. , Livigni A, Peradziryi H, Sharov AA, Chia G, Hammachi F, Migueles RP, Sukparangsi W, Pernagallo S, Bradley M, Nichols J, Ko MSH, Brickman JM ., Curr Biol. November 18, 2013; 23 (22): 2233-2244.
Par6b regulates the dynamics of apicobasal polarity during development of the stratified Xenopus epidermis. , Wang S, Cha SW , Zorn AM , Wylie C ., PLoS One. October 8, 2013; 8 (10): e76854.
Different thresholds of Wnt- Frizzled 7 signaling coordinate proliferation, morphogenesis and fate of endoderm progenitor cells. , Zhang Z , Rankin SA , Zorn AM ., Dev Biol. June 1, 2013; 378 (1): 1-12.
Cadherin-dependent differential cell adhesion in Xenopus causes cell sorting in vitro but not in the embryo. , Ninomiya H , David R , Damm EW, Fagotto F , Niessen CM, Winklbauer R ., J Cell Sci. April 15, 2012; 125 (Pt 8): 1877-83.
CRIM1 complexes with ß-catenin and cadherins, stabilizes cell-cell junctions and is critical for neural morphogenesis. , Ponferrada VG , Fan J, Vallance JE, Hu S, Mamedova A, Rankin SA , Kofron M , Zorn AM , Hegde RS, Lang RA ., PLoS One. January 1, 2012; 7 (3): e32635.
Regulation of classical cadherin membrane expression and F-actin assembly by alpha-catenins, during Xenopus embryogenesis. , Nandadasa S, Tao Q , Tao Q , Shoemaker A, Cha SW , Wylie C ., PLoS One. January 1, 2012; 7 (6): e38756.
PAPC and the Wnt5a/ Ror2 pathway control the invagination of the otic placode in Xenopus. , Jung B, Köhler A, Schambony A , Wedlich D ., BMC Dev Biol. June 10, 2011; 11 36.
Large-scale mechanical properties of Xenopus embryonic epithelium. , Luu O, David R , Ninomiya H , Winklbauer R ., Proc Natl Acad Sci U S A. March 8, 2011; 108 (10): 4000-5.
MID1 and MID2 are required for Xenopus neural tube closure through the regulation of microtubule organization. , Suzuki M , Hara Y, Takagi C, Yamamoto TS , Ueno N ., Development. July 1, 2010; 137 (14): 2329-39.
N- and E-cadherins in Xenopus are specifically required in the neural and non- neural ectoderm, respectively, for F-actin assembly and morphogenetic movements. , Nandadasa S, Tao Q , Menon NR, Heasman J , Wylie C ., Development. April 1, 2009; 136 (8): 1327-38.
Sfrp5 coordinates foregut specification and morphogenesis by antagonizing both canonical and noncanonical Wnt11 signaling. , Li Y, Rankin SA , Rankin SA , Sinner D , Kenny AP , Krieg PA , Zorn AM ., Genes Dev. November 1, 2008; 22 (21): 3050-63.
Multicellular computer simulation of morphogenesis: blastocoel roof thinning and matrix assembly in Xenopus laevis. , Longo D , Peirce SM , Skalak TC, Davidson L , Davidson L , Marsden M , Dzamba B, DeSimone DW ., Dev Biol. July 1, 2004; 271 (1): 210-22.
Integrin- ECM interactions regulate cadherin-dependent cell adhesion and are required for convergent extension in Xenopus. , Marsden M , DeSimone DW ., Curr Biol. July 15, 2003; 13 (14): 1182-91.