Papers associated with not (and morpholino)Search for not morpholinos using Textpresso
Results 1 - 20 of 36 results
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|Identification of microRNAs and microRNA targets in Xenopus gastrulae: The role of miR-26 in the regulation of Smad1.
Liu C, Lou CH, Shah V, Ritter R, Talley J, Soibam B, Benham A, Zhu H, Perez E, Shieh YE, Gunaratne PH, Sater AK.
Dev Biol. January 1, 2016; 409 (1): 26-38.
|The ribosome biogenesis factor Nol11 is required for optimal rDNA transcription and craniofacial development in Xenopus.
Griffin JN, Sondalle SB, Del Viso F, Baserga SJ, Khokha MK.
PLoS Genet. March 1, 2015; 11 (3): e1005018.
|Global identification of Smad2 and Eomesodermin targets in zebrafish identifies a conserved transcriptional network in mesendoderm and a novel role for Eomesodermin in repression of ectodermal gene expression.
Nelson AC, Cutty SJ, Niini M, Stemple DL, Flicek P, Houart C, Bruce AE, Wardle FC.
BMC Biol. October 3, 2014; 12 81.
|Occupancy of tissue-specific cis-regulatory modules by Otx2 and TLE/Groucho for embryonic head specification.
Yasuoka Y, Suzuki Y, Takahashi S, Someya H, Sudou N, Haramoto Y, Cho KW, Asashima M, Sugano S, Taira M.
Nat Commun. July 8, 2014; 5 4322.
|High-resolution analysis of gene activity during the Xenopus mid-blastula transition.
Collart C, Owens ND, Bhaw-Rosun L, Cooper B, De Domenico E, Patrushev I, Sesay AK, Smith JN, Smith JC, Gilchrist MJ.
Development. May 1, 2014; 141 (9): 1927-39.
|Zygotic expression of Exostosin1 (Ext1) is required for BMP signaling and establishment of dorsal-ventral pattern in Xenopus.
Shieh YE, Wells DE, Sater AK.
Int J Dev Biol. January 1, 2014; 58 (1): 27-34.
|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 MS, Brickman JM.
Curr Biol. November 18, 2013; 23 (22): 2233-44.
|Dhrs3 protein attenuates retinoic acid signaling and is required for early embryonic patterning.
Kam RK, Shi W, Chan SO, Chen Y, Xu G, Lau CB, Fung KP, Chan WY, Zhao H.
J Biol Chem. November 1, 2013; 288 (44): 31477-87.
|Directional migration of leading-edge mesoderm generates physical forces: Implication in Xenopus notochord formation during gastrulation.
Hara Y, Nagayama K, Yamamoto TS, Matsumoto T, Suzuki M, Suzuki M, Ueno N.
Dev Biol. October 15, 2013; 382 (2): 482-95.
|The Xenopus Tgfbi is required for embryogenesis through regulation of canonical Wnt signalling.
Wang F, Hu W, Xian J, Ohnuma S, Brenton JD.
Dev Biol. July 1, 2013; 379 (1): 16-27.
|Xenopus Zic3 controls notochord and organizer development through suppression of the Wnt/β-catenin signaling pathway.
Fujimi TJ, Hatayama M, Aruga J.
Dev Biol. January 15, 2012; 361 (2): 220-31.
|SNW1 is a critical regulator of spatial BMP activity, neural plate border formation, and neural crest specification in vertebrate embryos.
Wu MY, Ramel MC, Howell M, Hill CS.
PLoS Biol. January 1, 2011; 9 (2): e1000593.
|Xenopus furry contributes to release of microRNA gene silencing.
Goto T, Fukui A, Shibuya H, Keller R, Asashima M.
Proc Natl Acad Sci U S A. November 9, 2010; 107 (45): 19344-9.
|Wnt/Frizzled signaling requires dPRR, the Drosophila homolog of the prorenin receptor.
Buechling T, Bartscherer K, Ohkawara B, Chaudhary V, Spirohn K, Niehrs C, Boutros M.
Curr Biol. July 27, 2010; 20 (14): 1263-8.
|Distinct Xenopus Nodal ligands sequentially induce mesendoderm and control gastrulation movements in parallel to the Wnt/PCP pathway.
Luxardi G, Marchal L, Thomé V, Kodjabachian L.
Development. February 1, 2010; 137 (3): 417-26.
|Xenopus SMOC-1 Inhibits bone morphogenetic protein signaling downstream of receptor binding and is essential for postgastrulation development in Xenopus.
Thomas JT, Canelos P, Luyten FP, Moos M.
J Biol Chem. July 10, 2009; 284 (28): 18994-9005.
|The shroom family proteins play broad roles in the morphogenesis of thickened epithelial sheets.
Lee C, Lee C, Le MP, Wallingford JB.
Dev Dyn. June 1, 2009; 238 (6): 1480-91.
|Unc5B interacts with FLRT3 and Rnd1 to modulate cell adhesion in Xenopus embryos.
Karaulanov E, Böttcher RT, Stannek P, Wu W, Rau M, Ogata S, Cho KW, Niehrs C.
PLoS One. January 1, 2009; 4 (5): e5742.
|Concentrations of TATA box-binding protein (TBP)-type genes affect chordamesodermal gene expression.
Goto T, Keller R, Asashima M.
Int J Dev Biol. January 1, 2008; 52 (4): 371-5.
|ANR5, an FGF target gene product, regulates gastrulation in Xenopus.
Chung HA, Yamamoto TS, Ueno N.
Curr Biol. June 5, 2007; 17 (11): 932-9.