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Summary Expression Phenotypes Gene Literature (7) GO Terms (3) Nucleotides (177) Proteins (50) Interactants (43) Wiki
XB--973119

Papers associated with me3



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Chromosomal gain promotes formation of a steep RanGTP gradient that drives mitosis in aneuploid cells., Hasegawa K, Ryu SJ, Kaláb P., J Cell Biol. January 21, 2013; 200 (2): 151-61.      


Dynamics of enhancer chromatin signatures mark the transition from pluripotency to cell specification during embryogenesis., Bogdanovic O, Fernandez-Miñán A, Tena JJ, de la Calle-Mustienes E, Hidalgo C, van Kruysbergen I, van Heeringen SJ, Veenstra GJ, Gómez-Skarmeta JL., Genome Res. October 1, 2012; 22 (10): 2043-53.


Genome-wide analysis of gene expression during Xenopus tropicalis tadpole tail regeneration., Love NR, Chen Y, Bonev B, Gilchrist MJ, Fairclough L, Lea R, Mohun TJ, Paredes R, Zeef LA, Amaya E., BMC Dev Biol. November 15, 2011; 11 70.              


Barrier-to-Autointegration Factor influences specific histone modifications., Montes de Oca R, Andreassen PR, Wilson KL., Nucleus. November 1, 2011; 2 (6): 580-90.


Chromatin methylation activity of Dnmt3a and Dnmt3a/3L is guided by interaction of the ADD domain with the histone H3 tail., Zhang Y, Jurkowska R, Soeroes S, Rajavelu A, Dhayalan A, Bock I, Rathert P, Brandt O, Reinhardt R, Fischle W, Jeltsch A., Nucleic Acids Res. July 1, 2010; 38 (13): 4246-53.          


Histone H3 lysine 4 methylation is associated with the transcriptional reprogramming efficiency of somatic nuclei by oocytes., Murata K, Kouzarides T, Bannister AJ, Gurdon JB., Epigenetics Chromatin. February 4, 2010; 3 (1): 4.              


The target of the NSD family of histone lysine methyltransferases depends on the nature of the substrate., Li Y, Trojer P, Xu CF, Cheung P, Kuo A, Drury WJ, Qiao Q, Neubert TA, Xu RM, Gozani O, Reinberg D., J Biol Chem. December 4, 2009; 284 (49): 34283-95.              

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