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Production and characterization of monoclonal antibodies to xenopus proteins. , Horr B, Kurtz R, Pandey A, Hoffstrom BG, Schock E , LaBonne C , Alfandari D , Alfandari D ., Development. February 14, 2023;
Otic Neurogenesis in Xenopus laevis: Proliferation, Differentiation, and the Role of Eya1. , Almasoudi SH, Schlosser G ., Front Neuroanat. January 1, 2021; 15 722374.
Ric-8A, a GEF for heterotrimeric G-proteins, controls cranial neural crest cell polarity during migration. , Leal JI, Villaseca S, Beyer A, Toro-Tapia G, Torrejón M ., Mech Dev. December 1, 2018; 154 170-178.
Par3 interacts with Prickle3 to generate apical PCP complexes in the vertebrate neural plate. , Chuykin I, Ossipova O, Sokol SY ., Elife. September 26, 2018; 7
Chromosomal passenger complex hydrodynamics suggests chaperoning of the inactive state by nucleoplasmin/nucleophosmin. , Hanley ML, Yoo TY, Sonnett M, Needleman DJ, Mitchison TJ ., Mol Biol Cell. June 1, 2017; 28 (11): 1444-1456.
Stomach curvature is generated by left- right asymmetric gut morphogenesis. , Davis A, Amin NM , Johnson C, Bagley K, Ghashghaei HT, Nascone-Yoder N ., Development. April 15, 2017; 144 (8): 1477-1483.
Getting to know your neighbor: cell polarization in early embryos. , Nance J., J Cell Biol. September 29, 2014; 206 (7): 823-32.
Radial intercalation is regulated by the Par complex and the microtubule-stabilizing protein CLAMP/ Spef1. , Werner ME, Mitchell JW, Putzbach W, Bacon E, Kim SK, Mitchell BJ ., J Cell Biol. August 4, 2014; 206 (3): 367-76.
Par3 controls neural crest migration by promoting microtubule catastrophe during contact inhibition of locomotion. , Moore R, Theveneau E , Pozzi S, Alexandre P, Richardson J, Merks A, Parsons M, Kashef J , Linker C, Mayor R ., Development. December 1, 2013; 140 (23): 4763-75.
ERK2-mediated phosphorylation of Par3 regulates neuronal polarization. , Funahashi Y, Namba T, Fujisue S, Itoh N, Nakamuta S, Kato K, Shimada A, Xu C, Shan W, Nishioka T, Kaibuchi K., J Neurosci. August 14, 2013; 33 (33): 13270-85.
hnRNP K post-transcriptionally co-regulates multiple cytoskeletal genes needed for axonogenesis. , Liu Y , Szaro BG ., Development. July 1, 2011; 138 (14): 3079-90.
Blood vessel tubulogenesis requires Rasip1 regulation of GTPase signaling. , Xu K, Sacharidou A, Fu S, Chong DC, Skaug B, Chen ZJ, Davis GE, Cleaver O ., Dev Cell. April 19, 2011; 20 (4): 526-39.
DAAM1 is a formin required for centrosome re-orientation during cell migration. , Ang SF, Zhao ZS, Lim L, Manser E., PLoS One. September 7, 2010; 5 (9): .
Regulation of Lethal giant larvae by Dishevelled. , Dollar GL, Weber U, Mlodzik M, Sokol SY ., Nature. October 27, 2005; 437 (7063): 1376-80.
Downregulation of Par3 and aPKC function directs cells towards the ICM in the preimplantation mouse embryo. , Plusa B, Frankenberg S, Chalmers A , Hadjantonakis AK, Moore CA, Papalopulu N , Papaioannou VE, Glover DM, Zernicka-Goetz M., J Cell Sci. February 1, 2005; 118 (Pt 3): 505-15.
Nodal signaling uses activin and transforming growth factor-beta receptor-regulated Smads. , Kumar A, Novoselov V, Celeste AJ, Wolfman NM, ten Dijke P, Kuehn MR., J Biol Chem. January 5, 2001; 276 (1): 656-61.
Meiotic maturation induces animal-vegetal asymmetric distribution of aPKC and ASIP/ PAR-3 in Xenopus oocytes. , Nakaya M, Fukui A , Izumi Y, Akimoto K, Asashima M , Ohno S., Development. December 1, 2000; 127 (23): 5021-31.
Cellular localization of membrane-type serine protease 1 and identification of protease-activated receptor-2 and single-chain urokinase-type plasminogen activator as substrates. , Takeuchi T, Harris JL, Huang W, Yan KW, Coughlin SR, Craik CS., J Biol Chem. August 25, 2000; 275 (34): 26333-42.
Tissue factor- and factor X-dependent activation of protease-activated receptor 2 by factor VIIa. , Camerer E, Huang W, Coughlin SR., Proc Natl Acad Sci U S A. May 9, 2000; 97 (10): 5255-60.
An atypical PKC directly associates and colocalizes at the epithelial tight junction with ASIP, a mammalian homologue of Caenorhabditis elegans polarity protein PAR-3. , Izumi Y, Hirose T, Tamai Y, Hirai S, Nagashima Y, Fujimoto T, Tabuse Y, Kemphues KJ, Ohno S., J Cell Biol. October 5, 1998; 143 (1): 95-106.
A dual thrombin receptor system for platelet activation. , Kahn ML, Zheng YW, Huang W, Bigornia V, Zeng D, Moff S, Farese RV, Tam C, Coughlin SR., Nature. August 13, 1998; 394 (6694): 690-4.