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Molecular and Cellular Biology|September 6, 2007
Maf1 is involved in coupling carbon metabolism to RNA polymerase III transcriptionMałgorzata Cieśla, Joanna Towpik, Damian Graczyk, et al.
Open Biology|February 24, 2017
Novel layers of RNA polymerase III control affecting tRNA gene transcription in eukaryotesEwa Leśniewska, Magdalena Boguta
Acta Biochimica Polonica|June 19, 2008
Regulation of RNA polymerase III transcription by Maf1 proteinMałgorzata Cieśla, Magdalena Boguta
Frontiers in Molecular Biosciences|May 31, 2021
Specific Features of RNA Polymerases I and III: Structure and AssemblyTomasz W Turowski, Magdalena Boguta
Nucleic Acids Research|July 28, 2018
Function of TFIIIC, RNA polymerase III initiation factor, in activation and repression of tRNA gene transcriptionMalgorzata Ciesla, Ewa Skowronek, Magdalena Boguta
Biochimica Et Biophysica Acta. Gene Regulatory Mechanisms|October 22, 2018
Repression of yeast RNA polymerase III by stress leads to ubiquitylation and proteasomal degradation of its largest subunit, C160Ewa Leśniewska, Małgorzata Cieśla, Magdalena Boguta
Current Genetics|July 16, 2005
Expression of mitochondrial release factor in relation to respiratory competence in yeastJoanna Towpik, Jan Kutner, Magdalena Boguta
International Journal of Molecular Sciences|December 24, 2021
Molecular and Cellular Mechanisms Influenced by PostbioticsRafał Jastrząb, Damian Graczyk, Pawel Siedlecki
Wiley Interdisciplinary Reviews. RNA|September 17, 2013
An interplay between transcription, processing, and degradation determines tRNA levels in yeastDominika Wichtowska, Tomasz W Turowski, Magdalena Boguta
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