Papers
(20)
Results 1 - 20 of 20 results
Identification of the centrosomal maturation factor SSX2IP as a Wtip-binding partner by targeted proximity biotinylation. , Reis AH, Xiang B, Ossipova O, Itoh K, Sokol SY ., PLoS One. October 28, 2021; 16 (10): e0259068.
Tril dampens Nodal signaling through Pellino2- and Traf6-mediated activation of Nedd4l. , Kim HS , Green YS, Xie Y, Christian JL ., Proc Natl Acad Sci U S A. September 7, 2021; 118 (36):
A catenin of the plakophilin-subfamily, Pkp3, responds to canonical-Wnt pathway components and signals. , Hong JY, Zapata J, Blackburn A, Baumert R, Bae SM, Ji H, Nam HJ, Miller RK , McCrea PD ., Biochem Biophys Res Commun. July 23, 2021; 563 31-39.
Quantitative analyses reveal extracellular dynamics of Wnt ligands in Xenopus embryos. , Mii Y , Nakazato K, Pack CG, Ikeda T, Sako Y, Mochizuki A, Taira M , Takada S., Elife. April 27, 2021; 10
FoxH1 mediates a Grg4 and Smad2 dependent transcriptional switch in Nodal signaling during Xenopus mesoderm development. , Reid CD, Steiner AB, Yaklichkin S , Lu Q, Wang S, Hennessy M, Kessler DS ., Dev Biol. June 1, 2016; 414 (1): 34-44.
Plakophilin-3 catenin associates with the ETV1/ ER81 transcription factor to positively modulate gene activity. , Munoz WA, Lee M, Miller RK , Ahmed Z, Ji H, Link TM, Lee GR, Kloc M , Ladbury JE, McCrea PD ., PLoS One. January 3, 2014; 9 (1): e86784.
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. November 15, 2012; 125 (Pt 22): 5288-301.
Distinct roles for telethonin N-versus C-terminus in sarcomere assembly and maintenance. , Sadikot T, Hammond CR, Ferrari MB ., Dev Dyn. April 1, 2010; 239 (4): 1124-35.
Eya1 and Six1 promote neurogenesis in the cranial placodes in a SoxB1-dependent fashion. , Schlosser G , Awtry T, Brugmann SA , Jensen ED, Neilson K , Ruan G, Stammler A, Voelker D, Yan B , Zhang C, Klymkowsky MW , Moody SA ., Dev Biol. August 1, 2008; 320 (1): 199-214.
The efficiency of Xenopus primordial germ cell migration depends on the germplasm mRNA encoding the PDZ domain protein Grip2. , Kirilenko P, Weierud FK, Zorn AM , Woodland HR ., Differentiation. April 1, 2008; 76 (4): 392-403.
Zac1 promotes a Müller glial cell fate and interferes with retinal ganglion cell differentiation in Xenopus retina. , Ma L, Hocking JC , Hehr CL , Schuurmans C, McFarlane S ., Dev Dyn. January 1, 2007; 236 (1): 192-202.
Xenopus Teashirt1 regulates posterior identity in brain and cranial neural crest. , Koebernick K, Kashef J , Pieler T , Wedlich D ., Dev Biol. October 1, 2006; 298 (1): 312-26.
A requirement for NF-protocadherin and TAF1/Set in cell adhesion and neural tube formation. , Rashid D, Newell K, Shama L, Bradley R ., Dev Biol. March 1, 2006; 291 (1): 170-81.
Tissues and signals involved in the induction of placodal Six1 expression in Xenopus laevis. , Ahrens K , Schlosser G ., Dev Biol. December 1, 2005; 288 (1): 40-59.
Reorganization of actin cytoskeleton by FRIED, a Frizzled-8 associated protein tyrosine phosphatase. , Itoh K, Lisovsky M, Hikasa H, Sokol SY ., Dev Dyn. September 1, 2005; 234 (1): 90-101.
Xenopus single-minded ( xSim) is a nuclear factor allowing nuclear translocation of its cytoplasmic partner xArnt. , Coumailleau P , Bollérot K, Lecomte C, Angelier N ., Exp Cell Res. July 15, 2003; 287 (2): 237-48.
The Xenopus Ets transcription factor XER81 is a target of the FGF signaling pathway. , Münchberg SR , Steinbeisser H ., Mech Dev. January 1, 1999; 80 (1): 53-65.
NF-protocadherin, a novel member of the cadherin superfamily, is required for Xenopus ectodermal differentiation. , Bradley RS , Espeseth A, Kintner C ., Curr Biol. March 12, 1998; 8 (6): 325-34.
Xenopus VegT RNA is localized to the vegetal cortex during oogenesis and encodes a novel T-box transcription factor involved in mesodermal patterning. , Zhang J, King ML ., Development. December 1, 1996; 122 (12): 4119-29.
Ectopic expression of the proto-oncogene int-1 in Xenopus embryos leads to duplication of the embryonic axis. , McMahon AP, Moon RT ., Cell. September 22, 1989; 58 (6): 1075-84.