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Summary Anatomy Item Literature (12850) Expression Attributions Wiki
XB-ANAT-488

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A recurrent de novo mutation in KCNC1 causes progressive myoclonus epilepsy., Muona M., Nat Genet. January 1, 2015; 47 (1): 39-46.      


Vertebrate Cranial Placodes as Evolutionary Innovations-The Ancestor's Tale., Schlosser G., Curr Top Dev Biol. January 1, 2015; 111 235-300.


Characterization of tweety gene (ttyh1-3) expression in Xenopus laevis during embryonic development., Halleran AD., Gene Expr Patterns. January 1, 2015; 17 (1): 38-44.                            


Evolving gene regulatory networks into cellular networks guiding adaptive behavior: an outline how single cells could have evolved into a centralized neurosensory system., Fritzsch B., Cell Tissue Res. January 1, 2015; 359 (1): 295-313.


Termination of DNA replication forks: "Breaking up is hard to do"., Bailey R., Nucleus. January 1, 2015; 6 (3): 187-96.      


Ion channel reporter for monitoring the activity of engineered GPCRs., Moreau CJ., Methods Enzymol. January 1, 2015; 556 425-54.


FMRP regulates neurogenesis in vivo in Xenopus laevis tadpoles., Faulkner RL., eNeuro. January 1, 2015; 2 (1): e0055.                


Unique gene expression profile of the proliferating Xenopus tadpole tail blastema cells deciphered by RNA-sequencing analysis., Tsujioka H., PLoS One. January 1, 2015; 10 (3): e0111655.          


Targeted gene disruption in Xenopus laevis using CRISPR/Cas9., Wang F., Cell Biosci. January 1, 2015; 5 15.            


Remyelination by Resident Oligodendrocyte Precursor Cells in a Xenopus laevis Inducible Model of Demyelination., Sekizar S., Dev Neurosci. January 1, 2015; 37 (3): 232-42.


Identification of distal enhancers for Six2 expression in pronephros., Suzuki N., Int J Dev Biol. January 1, 2015; 59 (4-6): 241-6.      


ANP and CNP activate CFTR expressed in Xenopus laevis oocytes by direct activation of PKA., Stahl K., J Recept Signal Transduct Res. January 1, 2015; 35 (5): 493-504.


Comparative expression analysis of pfdn6a and tcp1α during Xenopus development., Marracci S., Int J Dev Biol. January 1, 2015; 59 (4-6): 235-40.                      


Sex-Biased Expression of Young Genes in Silurana (Xenopus) tropicalis., Chain FJ., Cytogenet Genome Res. January 1, 2015; 145 (3-4): 265-77.


SPAK and OSR1 Sensitivity of Excitatory Amino Acid Transporter EAAT3., Borrás J., Nephron. January 1, 2015; 130 (3): 221-8.


Evolution of Courtship Songs in Xenopus : Vocal Pattern Generation and Sound Production., Leininger EC., Cytogenet Genome Res. January 1, 2015; 145 (3-4): 302-14.              


Local and long-range endogenous resting potential gradients antagonistically regulate apoptosis and proliferation in the embryonic CNS., Pai VP., Int J Dev Biol. January 1, 2015; 59 (7-9): 327-40.


Nicotinic Activity of Arecoline, the Psychoactive Element of "Betel Nuts", Suggests a Basis for Habitual Use and Anti-Inflammatory Activity., Papke RL., PLoS One. January 1, 2015; 10 (10): e0140907.                  


A Database of microRNA Expression Patterns in Xenopus laevis., Ahmed A., PLoS One. January 1, 2015; 10 (10): e0138313.          


A Single Amino Acid Deletion (ΔF1502) in the S6 Segment of CaV2.1 Domain III Associated with Congenital Ataxia Increases Channel Activity and Promotes Ca2+ Influx., Bahamonde MI., PLoS One. January 1, 2015; 10 (12): e0146035.                


Up-Regulation of Excitatory Amino Acid Transporters EAAT1 and EAAT2 by ß-Klotho., Warsi J., Neurosignals. January 1, 2015; 23 (1): 59-70.


Regulation of the Na+,Cl- Coupled Creatine Transporter CreaT (SLC6A8) by the Janus Kinase JAK3., Fezai M., Neurosignals. January 1, 2015; 23 (1): 11-9.


Mixture toxicity of microcystin-LR, paraoxon and bromadiolone in Xenopus laevis embryos., Ondracek K., Neuro Endocrinol Lett. January 1, 2015; 36 Suppl 1 114-9.


Developmental expression of the N-myc downstream regulated gene (Ndrg) family during Xenopus tropicalis embryogenesis., Zhong C., Int J Dev Biol. January 1, 2015; 59 (10-12): 511-7.                                


NF-Protocadherin Regulates Retinal Ganglion Cell Axon Behaviour in the Developing Visual System., Leung LC., PLoS One. January 1, 2015; 10 (10): e0141290.                


Isoquercitrin suppresses colon cancer cell growth in vitro by targeting the Wnt/β-catenin signaling pathway., Amado NG., J Biol Chem. December 19, 2014; 289 (51): 35456-67.                  


Microtubule nucleation remote from centrosomes may explain how asters span large cells., Ishihara K., Proc Natl Acad Sci U S A. December 16, 2014; 111 (50): 17715-22.              


Subcellular metabolite and lipid analysis of Xenopus laevis eggs by LAESI mass spectrometry., Shrestha B., PLoS One. December 15, 2014; 9 (12): e115173.              


A novel mode of retinal regeneration: the merit of a new Xenopus model., Araki M., Neural Regen Res. December 15, 2014; 9 (24): 2125-7.    


GSK3 and Polo-like kinase regulate ADAM13 function during cranial neural crest cell migration., Abbruzzese G., Mol Biol Cell. December 15, 2014; 25 (25): 4072-82.                                    


Human slack potassium channel mutations increase positive cooperativity between individual channels., Kim GE., Cell Rep. December 11, 2014; 9 (5): 1661-1672.          


Controlling NMDA receptor subunit composition using ectopic retention signals., Stroebel D., J Neurosci. December 10, 2014; 34 (50): 16630-6.


Calcium-dependent neuroepithelial contractions expel damaged cells from the developing brain., Herrgen L., Dev Cell. December 8, 2014; 31 (5): 599-613.


aPKC phosphorylates p27Xic1, providing a mechanistic link between apicobasal polarity and cell-cycle control., Sabherwal N., Dev Cell. December 8, 2014; 31 (5): 559-71.                          


Specific association of growth-associated protein 43 with calcium release units in skeletal muscles of lower vertebrates., Caprara GA., Eur J Histochem. December 5, 2014; 58 (4): 2453.          


Constraint and adaptation in newt toll-like receptor genes., Babik W., Genome Biol Evol. December 4, 2014; 7 (1): 81-95.        


Probing α4βδ GABAA receptor heterogeneity: differential regional effects of a functionally selective α4β1δ/α4β3δ receptor agonist on tonic and phasic inhibition in rat brain., Hoestgaard-Jensen K., J Neurosci. December 3, 2014; 34 (49): 16256-72.


PV.1 induced by FGF-Xbra functions as a repressor of neurogenesis in Xenopus embryos., Yoon J., BMB Rep. December 1, 2014; 47 (12): 673-8.        


Early stages of induction of anterior head ectodermal properties in Xenopus embryos are mediated by transcriptional cofactor ldb1., Plautz CZ., Dev Dyn. December 1, 2014; 243 (12): 1606-18.              


Hedgehog activity controls opening of the primary mouth., Tabler JM., Dev Biol. December 1, 2014; 396 (1): 1-7.            


Transcriptional regulators in the Hippo signaling pathway control organ growth in Xenopus tadpole tail regeneration., Hayashi S., Dev Biol. December 1, 2014; 396 (1): 31-41.                      


Cell-autonomous signal transduction in the Xenopus egg Wnt/β-catenin pathway., Motomura E., Dev Growth Differ. December 1, 2014; 56 (9): 640-52.                                


Evolutionary innovation and conservation in the embryonic derivation of the vertebrate skull., Piekarski N., Nat Commun. December 1, 2014; 5 5661.                


Genome-wide view of TGFβ/Foxh1 regulation of the early mesendoderm program., Chiu WT., Development. December 1, 2014; 141 (23): 4537-47.                                  


Exon 3 splicing and mutagenesis identify residues influencing cell surface density of heterologously expressed silkworm (Bombyx mori) glutamate-gated chloride channels., Furutani S., Mol Pharmacol. December 1, 2014; 86 (6): 686-95.


Glycine and GABA(A) ultra-sensitive ethanol receptors as novel tools for alcohol and brain research., Naito A., Mol Pharmacol. December 1, 2014; 86 (6): 635-46.


A nonsynonymous mutation in the transcriptional regulator lbh is associated with cichlid craniofacial adaptation and neural crest cell development., Powder KE., Mol Biol Evol. December 1, 2014; 31 (12): 3113-24.


Fezf2 promotes neuronal differentiation through localised activation of Wnt/β-catenin signalling during forebrain development., Zhang S., Development. December 1, 2014; 141 (24): 4794-805.                            


Differential regulation of the glutamate transporters GLT-1 and GLAST by GSK3β., Jiménez E., Neurochem Int. December 1, 2014; 79 33-43.


Analyzing developmental sequences with Parsimov--a case study of cranial muscle development in anuran larvae., Ziermann JM., J Exp Zool B Mol Dev Evol. December 1, 2014; 322 (8): 586-606.

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