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Summary Expression Phenotypes Gene Literature (18) GO Terms (2) Nucleotides (372) Proteins (55) Interactants (86) Wiki
XB-GENEPAGE-950838

Papers associated with agxt



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Cytoplasmic organization promotes protein diffusion in Xenopus extracts., Huang WYC, Cheng X, Ferrell JE., Nat Commun. September 23, 2022; 13 (1): 5599.                              


Single-Particle Tracking Reveals Anti-Persistent Subdiffusion in Cell Extracts., Speckner K, Weiss M., Entropy (Basel). July 13, 2021; 23 (7):


Pesticide-induced multigenerational effects on amphibian reproduction and metabolism., Karlsson O, Svanholm S, Eriksson A, Chidiac J, Eriksson J, Jernerén F, Berg C., Sci Total Environ. June 25, 2021; 775 145771.                      


Structural basis for histone H2B deubiquitination by the SAGA DUB module., Morgan MT, Haj-Yahya M, Ringel AE, Bandi P, Brik A, Wolberger C., Science. February 12, 2016; 351 (6274): 725-8.


The Xenopus laevis Atg4B Protease: Insights into Substrate Recognition and Application for Tag Removal from Proteins Expressed in Pro- and Eukaryotic Hosts., Frey S, Görlich D., PLoS One. April 22, 2015; 10 (4): e0125099.                    


The endocytic adapter E-Syt2 recruits the p21 GTPase activated kinase PAK1 to mediate actin dynamics and FGF signalling., Jean S, Tremblay MG, Herdman C, Guillou F, Moss T., Biol Open. August 15, 2012; 1 (8): 731-8.          


A novel member of the trehalose transporter family functions as an h(+)-dependent trehalose transporter in the reabsorption of trehalose in malpighian tubules., Kikuta S, Hagiwara-Komoda Y, Noda H, Kikawada T., Front Physiol. January 1, 2012; 3 290.                      


The Gcn5 bromodomain of the SAGA complex facilitates cooperative and cross-tail acetylation of nucleosomes., Li S, Shogren-Knaak MA., J Biol Chem. April 3, 2009; 284 (14): 9411-7.


Phenotypic and functional analysis of human SLC26A6 variants in patients with familial hyperoxaluria and calcium oxalate nephrolithiasis., Monico CG, Weinstein A, Jiang Z, Rohlinger AL, Cogal AG, Bjornson BB, Olson JB, Bergstralh EJ, Milliner DS, Aronson PS., Am J Kidney Dis. December 1, 2008; 52 (6): 1096-103.


Interplay between FGF, one-eyed pinhead, and T-box transcription factors during zebrafish posterior development., Griffin KJ, Kimelman D., Dev Biol. December 15, 2003; 264 (2): 456-66.


Mutational analysis of the hexose transporter of Plasmodium falciparum and development of a three-dimensional model., Manning SK, Woodrow C, Zuniga FA, Iserovich P, Fischbarg J, Louw AI, Krishna S., J Biol Chem. August 23, 2002; 277 (34): 30942-9.


Identification of a novel Na+-independent acidic amino acid transporter with structural similarity to the member of a heterodimeric amino acid transporter family associated with unknown heavy chains., Matsuo H, Kanai Y, Kim JY, Chairoungdua A, Kim DK, Inatomi J, Shigeta Y, Ishimine H, Chaekuntode S, Tachampa K, Choi HW, Babu E, Fukuda J, Endou H., J Biol Chem. June 7, 2002; 277 (23): 21017-26.


Molecular basis for the dual mitochondrial and cytosolic localization of alanine:glyoxylate aminotransferase in amphibian liver cells., Holbrook JD, Danpure CJ., J Biol Chem. January 18, 2002; 277 (3): 2336-44.


Antagonism of an adenosine/ATP receptor in follicular Xenopus oocytes., King BF, Wildman SS, Townsend-Nicholson A, Burnstock G., J Pharmacol Exp Ther. June 1, 1998; 285 (3): 1005-11.


The ventral and posterior expression of the zebrafish homeobox gene eve1 is perturbed in dorsalized and mutant embryos., Joly JS, Joly C, Schulte-Merker S, Boulekbache H, Condamine H., Development. December 1, 1993; 119 (4): 1261-75.


Cell-autonomous action of zebrafish spt-1 mutation in specific mesodermal precursors., Ho RK, Kane DA., Nature. December 20, 1990; 348 (6303): 728-30.


Expression of a homeobox gene product in normal and mutant zebrafish embryos: evolution of the tetrapod body plan., Molven A, Wright CV, Bremiller R, De Robertis EM, Kimmel CB., Development. June 1, 1990; 109 (2): 279-88.


Amino acid sequence of phosvitin derived from the nucleotide sequence of part of the chicken vitellogenin gene., Byrne BM, van het Schip AD, van de Klundert JA, Arnberg AC, Gruber M, Ab G., Biochemistry. September 11, 1984; 23 (19): 4275-9.

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