Evolution of the System of Coordinate Regulation of Proteasomal Gene Expression in the Yeast Class Saccharomycetes
Author:
Publisher
Pleiades Publishing Ltd
Subject
Structural Biology,Biophysics
Link
http://link.springer.com/content/pdf/10.1134/S0026893319060086.pdf
Reference26 articles.
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3. Mannhaupt G., Schnall R., Karpov V., Vetter I., Feldmann H. 1999. Rpn4p acts as a transcription factor by binding to PACE, a nonamer box found upstream of 26S proteasomal and other genes in yeast. FEBS Lett. 450, 27–34.
4. Kapranov A.B., Preobrazhenskaya O.V., Tyutyaeva V.V., Stucka R., Feldman H., Karpov V.L. 2001. Isolation and identification of PACE-binding protein Rpn4, a new transcriptional activator regulating 26S-proteasomal and other genes. Mol. Biol. (Moscow). 35 (3), 356–364.
5. Spasskaya D.S., Karpov D.S., Mironov A.S., Karpov V.L. 2014. Transcription factor Rpn4 promotes a complex antistress response in Saccharomyces cerevisiae cells exposed to methyl methanesulfonate. Mol. Biol. (Moscow). 48 (1), 141–149.
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1. Rpn4p without the DNA-Binding Domain Provides Saccharomyces cerevisiae Resistance to Oxidative Stress and Cycloheximide;Molecular Biology;2022-08
2. CRISPR/Cas9-Mediated Genome Engineering Reveals the Contribution of the 26S Proteasome to the Extremophilic Nature of the Yeast Debaryomyces hansenii;ACS Synthetic Biology;2021-01-27
3. Yeast Rpn4 Links the Proteasome and DNA Repair via RAD52 Regulation;International Journal of Molecular Sciences;2020-10-30
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