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Bioessays : News and Reviews in Molecular, Cellular and Developmental Biology|July 15, 2015
The CCA-adding enzyme: A central scrutinizer in tRNA quality controlHeike Betat, Mario MörlBMC Microbiology|March 19, 2016
Genotyping bacterial and fungal pathogens using sequence variation in the gene for the CCA-adding enzymePaul Franz, Heike Betat, Mario MörlEMBO Reports|March 26, 2005
Is yeast on its way to evolving tRNA editing?Jens Schuster, Heike Betat, Mario MörlBiochimica Et Biophysica Acta. Gene Regulatory Mechanisms|January 29, 2018
A tRNA's fate is decided at its 3' end: Collaborative actions of CCA-adding enzyme and RNases involved in tRNA processing and degradationKarolin Wellner, Heike Betat, Mario MörlMolecular Biology and Evolution|October 23, 2020
CCA-Addition Gone Wild: Unusual Occurrence and Phylogeny of Four Different tRNA Nucleotidyltransferases in Acanthamoeba castellaniiLieselotte Erber, Heike Betat, Mario MörlCellular and Molecular Life Sciences : CMLS|February 16, 2010
tRNA nucleotidyltransferases: ancient catalysts with an unusual mechanism of polymerizationHeike Betat, Christiane Rammelt, Mario MörlMolecular Biology and Evolution|February 10, 2012
The TRAMP complex shows tRNA editing activity in S. cerevisiaeHelena Dickinson, Sandy Tretbar, Heike Betat, et al.Proceedings of the National Academy of Sciences of the United States of America|December 15, 2011
An inhibitory C-terminal region dictates the specificity of A-adding enzymesSandy Tretbar, Anne Neuenfeldt, Heike Betat, et al.Molecular Cell|August 12, 2004
Exchange of regions between bacterial poly(A) polymerase and the CCA-adding enzyme generates altered specificitiesHeike Betat, Christiane Rammelt, Georges Martin, et al.Proceedings of the National Academy of Sciences of the United States of America|June 5, 2008
Evolution of tRNA nucleotidyltransferases: a small deletion generated CC-adding enzymesAnne Neuenfeldt, Andrea Just, Heike Betat, et al.Pageof 8