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Summary Expression Phenotypes Gene Literature (16) GO Terms (6) Nucleotides (260) Proteins (88) Interactants (69) Wiki
XB-GENEPAGE-1012503

Papers associated with znf143



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Epigenetic homogeneity in histone methylation underlies sperm programming for embryonic transcription., Oikawa M, Simeone A, Hormanseder E, Teperek M, Gaggioli V, O'Doherty A, Falk E, Sporniak M, D'Santos C, Franklin VNR, Kishore K, Bradshaw CR, Keane D, Freour T, David L, Grzybowski AT, Ruthenburg AJ, Gurdon J, Jullien J., Nat Commun. July 13, 2020; 11 (1): 3491.              


ZNF143 protein is an important regulator of the myeloid transcription factor C/EBPα., Gonzalez D, Luyten A, Bartholdy B, Zhou Q, Kardosova M, Ebralidze A, Swanson KD, Radomska HS, Zhang P, Kobayashi SS, Welner RS, Levantini E, Steidl U, Chong G, Collombet S, Choi MH, Friedman AD, Scott LM, Alberich-Jorda M, Tenen DG., J Biol Chem. November 17, 2017; 292 (46): 18924-18936.


Transcriptional regulation of the human establishment of cohesion 1 homolog 2 gene., Nishihara M, Yamada M, Nozaki M, Nakahira K, Yanagihara I., Biochem Biophys Res Commun. February 26, 2010; 393 (1): 111-7.


ZNF143 interacts with p73 and is involved in cisplatin resistance through the transcriptional regulation of DNA repair genes., Wakasugi T, Izumi H, Uchiumi T, Suzuki H, Arao T, Nishio K, Kohno K., Oncogene. August 9, 2007; 26 (36): 5194-203.


A genome scale location analysis of human Staf/ZNF143-binding sites suggests a widespread role for human Staf/ZNF143 in mammalian promoters., Myslinski E, Gérard MA, Krol A, Carbon P., J Biol Chem. December 29, 2006; 281 (52): 39953-62.


ZNF143 activates gene expression in response to DNA damage and binds to cisplatin-modified DNA., Ishiguchi H, Izumi H, Torigoe T, Yoshida Y, Kubota H, Tsuji S, Kohno K., Int J Cancer. October 10, 2004; 111 (6): 900-9.


Characterization of snRNA and snRNA-type genes in the pufferfish Fugu rubripes., Myslinski E, Krol A, Carbon P., Gene. April 14, 2004; 330 149-58.


An unusually compact external promoter for RNA polymerase III transcription of the human H1RNA gene., Myslinski E, Amé JC, Krol A, Carbon P., Nucleic Acids Res. June 15, 2001; 29 (12): 2502-9.


Structural organization of Staf-DNA complexes., Schaub M, Krol A, Carbon P., Nucleic Acids Res. May 15, 2000; 28 (10): 2114-21.


Maximization of selenocysteine tRNA and U6 small nuclear RNA transcriptional activation achieved by flexible utilization of a Staf zinc finger., Schaub M, Myslinski E, Krol A, Carbon P., J Biol Chem. August 27, 1999; 274 (35): 25042-50.


Flexible zinc finger requirement for binding of the transcriptional activator staf to U6 small nuclear RNA and tRNA(Sec) promoters., Schaub M, Krol A, Carbon P., J Biol Chem. August 20, 1999; 274 (34): 24241-9.


Molecular cloning of a cDNA encoding human SPH-binding factor, a conserved protein that binds to the enhancer-like region of the U6 small nuclear RNA gene promoter., Rincon JC, Engler SK, Hargrove BW, Kunkel GR., Nucleic Acids Res. November 1, 1998; 26 (21): 4846-52.


ZNF76 and ZNF143 are two human homologs of the transcriptional activator Staf., Myslinski E, Krol A, Carbon P., J Biol Chem. August 21, 1998; 273 (34): 21998-2006.


Molecular cloning and characterization of the murine staf cDNA encoding a transcription activating factor for the selenocysteine tRNA gene in mouse mammary gland., Adachi K, Saito H, Tanaka T, Oka T., J Biol Chem. April 10, 1998; 273 (15): 8598-606.


Staf, a promiscuous activator for enhanced transcription by RNA polymerases II and III., Schaub M, Myslinski E, Schuster C, Krol A, Carbon P., EMBO J. January 2, 1997; 16 (1): 173-81.


Staf, a novel zinc finger protein that activates the RNA polymerase III promoter of the selenocysteine tRNA gene., Schuster C, Myslinski E, Krol A, Carbon P., EMBO J. August 1, 1995; 14 (15): 3777-87.

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