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Summary Expression Phenotypes Gene Literature (28) GO Terms (4) Nucleotides (1079) Proteins (52) Interactants (131) Wiki

Papers associated with cpa1

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1 paper(s) referencing morpholinos

Results 1 - 28 of 28 results

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DNA methylation dynamics underlie metamorphic gene regulation programs in Xenopus tadpole brain., Kyono Y, Raj S, Sifuentes CJ, Buisine N, Sachs L, Denver RJ., Dev Biol. June 15, 2020; 462 (2): 180-196.                                                    

I-J loop involvement in the pharmacological profile of CLC-K channels expressed in Xenopus oocytes., Gradogna A, Imbrici P, Zifarelli G, Liantonio A, Camerino DC, Pusch M., Biochim Biophys Acta. November 1, 2014; 1838 (11): 2745-56.                        

Extracellular gentamicin reduces the activity of connexin hemichannels and interferes with purinergic Ca(2+) signaling in HeLa cells., Figueroa VA, Retamal MA, Cea LA, Salas JD, Vargas AA, Verdugo CA, Jara O, Martínez AD, Sáez JC., Front Cell Neurosci. May 27, 2014; 8 265.                  

Phospholipase C and diacylglycerol mediate olfactory responses to amino acids in the main olfactory epithelium of an amphibian., Sansone A, Hassenklöver T, Syed AS, Korsching SI, Manzini I., PLoS One. January 17, 2014; 9 (1): e87721.          

Purinergic receptor-induced Ca2+ signaling in the neuroepithelium of the vomeronasal organ of larval Xenopus laevis., Dittrich K, Sansone A, Hassenklöver T, Manzini I., Purinergic Signal. January 1, 2014; 10 (2): 327-36.          

A critical role for STIM1 in filopodial calcium entry and axon guidance., Shim S, Zheng JQ, Ming GL., Mol Brain. December 1, 2013; 6 51.                  

Rho signalling restriction by the RhoGAP Stard13 integrates growth and morphogenesis in the pancreas., Petzold KM, Naumann H, Spagnoli FM., Development. January 1, 2013; 140 (1): 126-35.

Tet3 CXXC domain and dioxygenase activity cooperatively regulate key genes for Xenopus eye and neural development., Xu Y, Xu Y, Xu C, Kato A, Tempel W, Abreu JG, Bian C, Hu Y, Hu D, Zhao B, Cerovina T, Diao J, Wu F, He HH, Cui Q, Clark E, Ma C, Barbara A, Veenstra GJ, Xu G, Kaiser UB, Liu XS, Sugrue SP, He X, Min J, Kato Y, Shi YG., Cell. December 7, 2012; 151 (6): 1200-13.                

Purified E255L mutant SERCA1a and purified PfATP6 are sensitive to SERCA-type inhibitors but insensitive to artemisinins., Cardi D, Pozza A, Arnou B, Marchal E, Clausen JD, Andersen JP, Krishna S, Møller JV, le Maire M, Jaxel C., J Biol Chem. August 20, 2010; 285 (34): 26406-16.                

Developmental biology of the Psammomys obesus pancreas: cloning and expression of the Neurogenin-3 gene., Vedtofte L, Bödvarsdóttir TB, Karlsen AE, Heller RS., J Histochem Cytochem. January 1, 2007; 55 (1): 97-104.

Characterization of atrazine-induced gonadal malformations in African clawed frogs (Xenopus laevis) and comparisons with effects of an androgen antagonist (cyproterone acetate) and exogenous estrogen (17beta-estradiol): Support for the demasculinization/feminization hypothesis., Hayes TB, Stuart AA, Mendoza M, Collins A, Noriega N, Vonk A, Johnston G, Liu R, Kpodzo D., Environ Health Perspect. April 1, 2006; 114 Suppl 1 134-41.                          

Proton sensing of CLC-0 mutant E166D., Traverso S, Zifarelli G, Aiello R, Pusch M., J Gen Physiol. January 1, 2006; 127 (1): 51-65.                          

Wnt5 signaling in vertebrate pancreas development., Kim HJ, Schleiffarth JR, Jessurun J, Sumanas S, Petryk A, Lin S, Ekker SC., BMC Biol. October 24, 2005; 3 23.                    

Acute regulation of Na/H exchanger NHE3 by adenosine A(1) receptors is mediated by calcineurin homologous protein., Di Sole F, Cerull R, Babich V, Quiñones H, Gisler SM, Biber J, Murer H, Burckhardt G, Helmle-Kolb C, Moe OW., J Biol Chem. January 23, 2004; 279 (4): 2962-74.

Conformational changes in the pore of CLC-0., Accardi A, Pusch M., J Gen Physiol. September 1, 2003; 122 (3): 277-93.                          

Gating competence of constitutively open CLC-0 mutants revealed by the interaction with a small organic Inhibitor., Traverso S, Elia L, Pusch M., J Gen Physiol. September 1, 2003; 122 (3): 295-306.                                  

Molecular modeling of p-chlorophenoxyacetic acid binding to the CLC-0 channel., Moran O, Traverso S, Elia L, Pusch M., Biochemistry. May 13, 2003; 42 (18): 5176-85.

Screening for novel pancreatic genes from in vitro-induced pancreas in Xenopus., Sogame A, Hayata T, Asashima M., Dev Growth Differ. April 1, 2003; 45 (2): 143-52.                  

Molecular aspects of acute inhibition of Na(+)-H(+) exchanger NHE3 by A(2)-adenosine receptor agonists., Di Sole F, Cerull R, Casavola V, Moe OW, Burckhardt G, Helmle-Kolb C., J Physiol. June 1, 2002; 541 (Pt 2): 529-43.

Functional characterization of an endogenous Xenopus oocyte adenosine receptor., Kobayashi T, Ikeda K, Kumanishi T., Br J Pharmacol. January 1, 2002; 135 (2): 313-22.

Adenosine regulates the IL-1 beta-induced cellular functions of human gingival fibroblasts., Murakami S, Hashikawa T, Saho T, Takedachi M, Nozaki T, Shimabukuro Y, Okada H., Int Immunol. December 1, 2001; 13 (12): 1533-40.

Development of the pancreas in Xenopus laevis., Kelly OG, Melton DA., Dev Dyn. August 1, 2000; 218 (4): 615-27.                  

Adenosine A1 receptors modulate high voltage-activated Ca2+ currents and motor pattern generation in the xenopus embryo., Brown P, Dale N., J Physiol. June 15, 2000; 525 Pt 3 655-67.

Adenosine inhibits the transfected Na+-H+ exchanger NHE3 in Xenopus laevis renal epithelial cells (A6/C1)., Di Sole F, Casavola V, Mastroberardino L, Verrey F, Moe OW, Burckhardt G, Murer H, Helmle-Kolb C., J Physiol. March 15, 1999; 515 ( Pt 3) 829-42.

Polarization of adenosine effects on intracellular pH in A6 renal epithelial cells., Casavola V, Guerra L, Reshkin SJ, Jacobson KA, Murer H., Mol Pharmacol. March 1, 1997; 51 (3): 516-23.

The androgen receptor mRNA is up-regulated by testosterone in both the Harderian gland and thumb pad of the frog, Rana esculenta., Varriale B, Serino I., J Steroid Biochem Mol Biol. December 1, 1994; 51 (5-6): 259-65.

[The loss of CpG dinucleotides from DNA. III. Methylation and evolution of histone genes]., Mazin AL, Vaniushin BF., Mol Biol (Mosk). January 1, 1987; 21 (3): 678-87.

The distribution of the dinucleotide CpG and cytosine methylation in the vitellogenin gene family., Cooper DN, Gerber-Huber S, Nardelli D, Schubiger JL, Wahli W., J Mol Evol. January 1, 1987; 25 (2): 107-15.

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