Sfp1 is a stress- and nutrient-sensitive regulator of ribosomal protein gene expression
- 7 September 2004
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 101 (40) , 14315-14322
- https://doi.org/10.1073/pnas.0405353101
Abstract
Yeast cells modulate their protein synthesis capacity in response to physiological needs through the transcriptional control of ribosomal protein (RP) genes. Here we demonstrate that the transcription factor Sfp1, previously shown to play a role in the control of cell size, regulates RP gene expression in response to nutrients and stress. Under optimal growth conditions, Sfp1 is localized to the nucleus, bound to the promoters of RP genes, and helps promote RP gene expression. In response to inhibition of target of rapamycin (TOR) signaling, stress, or changes in nutrient availability, Sfp1 is released from RP gene promoters and leaves the nucleus, and RP gene transcription is down-regulated. Additionally, cells lacking Sfp1 fail to appropriately modulate RP gene expression in response to environmental cues. We conclude that Sfp1 integrates information from nutrient- and stress-responsive signaling pathways to help control RP gene expression.Keywords
This publication has 51 references indexed in Scilit:
- TOR and PKA Signaling Pathways Converge on the Protein Kinase Rim15 to Control Entry into G0Molecular Cell, 2003
- Principles of transcriptional control in the metabolic network of Saccharomyces cerevisiaeNature Biotechnology, 2003
- Global analysis of protein localization in budding yeastNature, 2003
- Sfp1 Plays a Key Role in Yeast Ribosome BiogenesisEukaryotic Cell, 2003
- Multiple Roles of Tap42 in Mediating Rapamycin-Induced Transcriptional Changes in YeastMolecular Cell, 2003
- TOR signalling in bugs, brain and brawnNature Reviews Molecular Cell Biology, 2003
- Transcriptional Regulatory Networks in Saccharomyces cerevisiaeScience, 2002
- mTOR Interacts with Raptor to Form a Nutrient-Sensitive Complex that Signals to the Cell Growth MachineryCell, 2002
- A split zinc-finger protein is required for normal yeast growthGene, 1991
- Ras-regulated signaling processes in Saccharomyces cerevisiaeCurrent Opinion in Genetics & Development, 1991