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The Journal of Biological Chemistry|August 15, 2009
The yeast RNA polymerase II-associated factor Iwr1p is involved in the basal and regulated transcription of specific genesLorena Peiró-Chova, Francisco EstruchMolecular Biology of the Cell|April 11, 2003
An early function during transcription for the yeast mRNA export factor Dbp5p/Rat8p suggested by its genetic and physical interactions with transcription factor IIH componentsFrancisco Estruch, Charles N ColeFEMS Yeast Research|December 5, 2003
Construction of a Trp- commercial baker's yeast strain by using food-safe-grade dominant drug resistance cassettesFrancisco Estruch, José Antonio PrietoGenetics|March 7, 2007
Specific defects in different transcription complexes compensate for the requirement of the negative cofactor 2 repressor in Saccharomyces cerevisiaeLorena Peiró-Chova, Francisco EstruchBiochimica Et Biophysica Acta|October 13, 2015
Different pathways for the nuclear import of yeast RNA polymerase IINatalia Gómez-Navarro, Francisco EstruchThe Journal of Biological Chemistry|July 3, 2002
Convergence of the target of rapamycin and the Snf1 protein kinase pathways in the regulation of the subcellular localization of Msn2, a transcriptional activator of STRE (Stress Response Element)-regulated genesIsabel Mayordomo, Francisco Estruch, Pascual SanzBiochimica Et Biophysica Acta. Gene Regulatory Mechanisms|March 5, 2017
Iwr1 facilitates RNA polymerase II dynamics during transcription elongationNatalia Gómez-Navarro, Lorena Peiró-Chova, Francisco EstruchApplied and Environmental Microbiology|June 1, 2002
Gene expression analysis of cold and freeze stress in Baker's yeastSonia Rodriguez-Vargas, Francisco Estruch, Francisca Randez-GilThe Journal of Biological Chemistry|December 28, 2004
Physical and genetic interactions link the yeast protein Zds1p with mRNA nuclear exportFrancisco Estruch, Christine A Hodge, Susana Rodríguez-Navarro, et al.Microbial Biotechnology|November 20, 2019
The formation of hybrid complexes between isoenzymes of glyceraldehyde-3-phosphate dehydrogenase regulates its aggregation state, the glycolytic activity and sphingolipid status in Saccharomyces cerevisiaeFrancisca Randez-Gil, Isabel E Sánchez-Adriá, Francisco Estruch, et al.Pageof 3