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Summary Anatomy Item Literature (2410) Expression Attributions Wiki
XB-ANAT-28

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Dehydration mediated microRNA response in the African clawed frog Xenopus laevis., Wu CW., Gene. October 25, 2013; 529 (2): 269-75.   


Regulation of neurogenesis by Fgf8a requires Cdc42 signaling and a novel Cdc42 effector protein., Hulstrand AM., Dev Biol. October 15, 2013; 382 (2): 385-99.   


Directional migration of leading-edge mesoderm generates physical forces: Implication in Xenopus notochord formation during gastrulation., Hara Y., Dev Biol. October 15, 2013; 382 (2): 482-95.   


Par6b regulates the dynamics of apicobasal polarity during development of the stratified Xenopus epidermis., Wang S., PLoS One. October 8, 2013; 8 (10): e76854.   


Developmental mechanisms directing early anterior forebrain specification in vertebrates., Andoniadou CL., Cell Mol Life Sci. October 1, 2013; 70 (20): 3739-52.   


Myb promotes centriole amplification and later steps of the multiciliogenesis program., Tan FE., Development. October 1, 2013; 140 (20): 4277-86.   


In vivo T-box transcription factor profiling reveals joint regulation of embryonic neuromesodermal bipotency., Gentsch GE., Cell Rep. September 26, 2013; 4 (6): 1185-96.   


The Xenopus amygdala mediates socially appropriate vocal communication signals., Hall IC., J Neurosci. September 4, 2013; 33 (36): 14534-48.   


Peptidomic analysis of skin secretions provides insight into the taxonomic status of the African clawed frogs Xenopus victorianus and Xenopus laevis sudanensis (Pipidae)., King JD., Comp Biochem Physiol Part D Genomics Proteomics. September 1, 2013; 8 (3): 250-4.


Nonclassical MHC class I-dependent invariant T cells are evolutionarily conserved and prominent from early development in amphibians., Edholm ES., Proc Natl Acad Sci U S A. August 27, 2013; 110 (35): 14342-7.   


Xenopus laevis nucleotide binding protein 1 (xNubp1) is important for convergent extension movements and controls ciliogenesis via regulation of the actin cytoskeleton., Ioannou A., Dev Biol. August 15, 2013; 380 (2): 243-58.   


Cleaning up the masses: exclusion lists to reduce contamination with HPLC-MS/MS., Hodge K., J Proteomics. August 2, 2013; 88 92-103.   


Skin wound healing in different aged Xenopus laevis., Bertolotti E., J Morphol. August 1, 2013; 274 (8): 956-64.


ANKS6 is a central component of a nephronophthisis module linking NEK8 to INVS and NPHP3., Hoff S., Nat Genet. August 1, 2013; 45 (8): 951-6.   


Trichodina xenopodus, a ciliated protozoan, in a laboratory-maintained Xenopus laevis., Collymore C., Comp Med. August 1, 2013; 63 (4): 310-2.


Cutaneous nitrogen excretion in the African clawed frog Xenopus laevis: effects of high environmental ammonia (HEA)., Cruz MJ., Aquat Toxicol. July 15, 2013; 136-137 1-12.


Distinctive changes in plasma membrane phosphoinositides underlie differential regulation of TRPV1 in nociceptive neurons., Lukacs V., J Neurosci. July 10, 2013; 33 (28): 11451-63.


The centriolar satellite protein SSX2IP promotes centrosome maturation., Bärenz F., J Cell Biol. July 8, 2013; 202 (1): 81-95.   


Inositol kinase and its product accelerate wound healing by modulating calcium levels, Rho GTPases, and F-actin assembly., Soto X., Proc Natl Acad Sci U S A. July 2, 2013; 110 (27): 11029-34.   


A comparison of host-defense peptides in skin secretions of female Xenopus laevis × Xenopus borealis and X. borealis × X. laevis F1 hybrids., Mechkarska M., Peptides. July 1, 2013; 45 1-8.


Syndecan 4 interacts genetically with Vangl2 to regulate neural tube closure and planar cell polarity., Escobedo N., Development. July 1, 2013; 140 (14): 3008-17.   


On becoming neural: what the embryo can tell us about differentiating neural stem cells., Moody SA., Am J Stem Cells. June 30, 2013; 2 (2): 74-94.   


The human Cx26-D50A and Cx26-A88V mutations causing keratitis-ichthyosis-deafness syndrome display increased hemichannel activity., Mhaske PV., Am J Physiol Cell Physiol. June 15, 2013; 304 (12): C1150-8.


Germline Transgenic Methods for Tracking Cells and Testing Gene Function during Regeneration in the Axolotl., Khattak S., Stem Cell Reports. June 4, 2013; 1 (1): 90-103.   


Bimodal processing of olfactory information in an amphibian nose: odor responses segregate into a medial and a lateral stream., Gliem S., Cell Mol Life Sci. June 1, 2013; 70 (11): 1965-84.   


Postnatal regulation of X,K-ATPases in rat skin and conserved lateroapical polarization of Na,K-ATPase in vertebrate epidermis., Pestov NB., Exp Dermatol. June 1, 2013; 22 (6): 423-5.


The neural crest., Mayor R., Development. June 1, 2013; 140 (11): 2247-51.   


The hypoxia factor Hif-1α controls neural crest chemotaxis and epithelial to mesenchymal transition., Barriga EH., J Cell Biol. May 27, 2013; 201 (5): 759-76.   


Xenopus radial spoke protein 3 gene is expressed in the multiciliated cells of epidermis and otic vesicles and sequentially in the nephrostomes., Zhang YJ., Dev Genes Evol. May 1, 2013; 223 (3): 183-8.


Transmembrane voltage potential is an essential cellular parameter for the detection and control of tumor development in a Xenopus model., Chernet BT., Dis Model Mech. May 1, 2013; 6 (3): 595-607.   


Xenopus cytoplasmic linker-associated protein 1 (XCLASP1) promotes axon elongation and advance of pioneer microtubules., Marx A., Mol Biol Cell. May 1, 2013; 24 (10): 1544-58.   


Energetic role of the paddle motif in voltage gating of Shaker K(+) channels., Xu Y., Nat Struct Mol Biol. May 1, 2013; 20 (5): 574-81.   


Ciliogenesis and cerebrospinal fluid flow in the developing Xenopus brain are regulated by foxj1., Hagenlocher C., Cilia. April 29, 2013; 2 (1): 12.   


The (pro)renin receptor controls Wnt signalling: promise from Drosophila and Xenopus., Raymond K., Eur J Dermatol. April 19, 2013; .


The melanocyte photosensory system in the human skin., Iyengar B., Springerplus. April 12, 2013; 2 (1): 158.   


Pax3 and Zic1 drive induction and differentiation of multipotent, migratory, and functional neural crest in Xenopus embryos., Milet C., Proc Natl Acad Sci U S A. April 2, 2013; 110 (14): 5528-33.   


ICA-105574 interacts with a common binding site to elicit opposite effects on inactivation gating of EAG and ERG potassium channels., Garg V., Mol Pharmacol. April 1, 2013; 83 (4): 805-13.


Synergistic insertion of antimicrobial magainin-family peptides in membranes depends on the lipid spontaneous curvature., Strandberg E., Biophys J. March 19, 2013; 104 (6): L9-11.


Effective RNAi-mediated β2-microglobulin loss of function by transgenesis in Xenopus laevis., Nedelkovska H., Biol Open. March 15, 2013; 2 (3): 335-42.   


Light-activation of the Archaerhodopsin H(+)-pump reverses age-dependent loss of vertebrate regeneration: sparking system-level controls in vivo., Adams DS., Biol Open. March 15, 2013; 2 (3): 306-13.   


Injury-induced asymmetric cell death as a driving force for head regeneration in Hydra., Galliot B., Dev Genes Evol. March 1, 2013; 223 (1-2): 39-52.


Ancient T-independence of mucosal IgX/A: gut microbiota unaffected by larval thymectomy in Xenopus laevis., Mashoof S., Mucosal Immunol. March 1, 2013; 6 (2): 358-68.   


Lin28 proteins are required for germ layer specification in Xenopus., Faas L., Development. March 1, 2013; 140 (5): 976-86.   


Expression of the amelogenin gene in the skin of Xenopus tropicalis., Okada M., Zoolog Sci. March 1, 2013; 30 (3): 154-9.   


Pulmonary and cutaneous O₂gas exchange: a student laboratory exercise in the frog., Tattersall GJ., Adv Physiol Educ. March 1, 2013; 37 (1): 97-105.


Interplay between calmodulin and phosphatidylinositol 4,5-bisphosphate in Ca2+-induced inactivation of transient receptor potential vanilloid 6 channels., Cao C., J Biol Chem. February 22, 2013; 288 (8): 5278-90.


Expression of pluripotency factors in larval epithelia of the frog Xenopus: evidence for the presence of cornea epithelial stem cells., Perry KJ., Dev Biol. February 15, 2013; 374 (2): 281-94.   


Evaluation of PhTX-74 as subtype-selective inhibitor of GluA2-containing AMPA receptors., Poulsen MH., Mol Pharmacol. February 12, 2013; 85 (2): 261-8.


Oleoyl-L-carnitine inhibits glycine transport by GlyT2., Carland JE., Br J Pharmacol. February 1, 2013; 168 (4): 891-902.


The effect of a 94 GHz electromagnetic field on neuronal microtubules., Samsonov A., Bioelectromagnetics. February 1, 2013; 34 (2): 133-44.

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