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Nucleic Acids Research|April 6, 2005
Comparative gene finding in chicken indicates that we are closing in on the set of multi-exonic widely expressed human genesRobert Castelo, Alexandre Reymond, Carine Wyss, et al.Nucleic Acids Research|August 13, 2013
Topoisomerase II regulates yeast genes with singular chromatin architecturesChristoforos Nikolaou, Ignacio Bermúdez, Chaysavanh Manichanh, et al.Genome Biology|September 12, 2008
Conserved chromosomal clustering of genes governed by chromatin regulators in DrosophilaEnrique Blanco, Miguel Pignatelli, Sergi Beltran, et al.Cell Reports|January 26, 2016
Spatiotemporal Control of Forkhead Binding to DNA Regulates the Meiotic Gene Expression ProgramIsabel Alves-Rodrigues, Pedro G Ferreira, Alberto Moldón, et al.Molecular Biology and Evolution|July 15, 2016
Lokiarchaeota Marks the Transition between the Archaeal and Eukaryotic Selenocysteine Encoding SystemsMarco Mariotti, Alexei V Lobanov, Bruno Manta, et al.Science (New York, N.Y.)|May 31, 2003
Characterization of mammalian selenoproteomesGregory V Kryukov, Sergi Castellano, Sergey V Novoselov, et al.Biorxiv : the Preprint Server for Biology|April 1, 2025
Long-read transcriptomics of a diverse human cohort reveals widespread ancestry bias in gene annotationPau Clavell-Revelles, Fairlie Reese, Sílvia Carbonell-Sala, et al.EMBO Reports|January 8, 2004
Reconsidering the evolution of eukaryotic selenoproteins: a novel nonmammalian family with scattered phylogenetic distributionSergi Castellano, Sergey V Novoselov, Gregory V Kryukov, et al.Genome Research|December 14, 2005
Tandem chimerism as a means to increase protein complexity in the human genomeGenís Parra, Alexandre Reymond, Noura Dabbouseh, et al.Nature|February 26, 2013
CPEB1 coordinates alternative 3'-UTR formation with translational regulationFelice-Alessio Bava, Carolina Eliscovich, Pedro G Ferreira, et al.Pageof 22