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Updated: Jun 9, 2026

A Deep-sequencing-assisted, Spontaneous Suppressor Screen in the Fission Yeast Schizosaccharomyces pombe
Published on: March 7, 2019
Suppression of Ycf1p function by Cka1p-dependent phosphorylation is attenuated in response to salt stress
Kerry A Pickin1, Nkiruka Ezenwajiaku, Holly Overcash
1Department of Toxicology, University of Kentucky, Lexington, KY 40536, USA.
Abstract:
The yeast vacuolar membrane protein Ycf1p and its mammalian counterpart, MRP1, belong to the ABCC subfamily of ATP-binding cassette transporters. Genetic evidence suggests that the yeast casein kinase 2α, Cka1p, negatively regulates Ycf1p function via phosphorylation of Ser251 within the N-terminus. In this study, we provide strong evidence that Cka1p regulates Ycf1p function via phosphorylation of Ser251. We show that the CK2 holoenzyme interacts with Ycf1p. However, genetic analysis suggests that only Cka1p is required for Ser251 phosphorylation, as the deletion of CKA1 significantly reduces Ser251 phosphorylation in vivo. Furthermore, purified recombinant Cka1p phosphorylates a Ycf1p-derived peptide containing Ser251. We also demonstrate that Ycf1p function is induced in response to high salt stress. Induction of the Ycf1p function strongly correlates with reduced phosphorylation of Ser251. Importantly, Cka1p activity in vivo is similarly reduced in response to salt stress, consistent with our finding that Cka1p directly phosphorylates Ser251 of Ycf1p. We provide genetic and biochemical evidence that strongly suggests that the induction of Ycf1p function is the result of decreased phosphorylation of Ser251. In conclusion, our work demonstrates a novel biochemical role for Cka1p regulation of Ycf1p function in the cellular response of yeast to salt stress.
Insights
Yeast casein kinase 2α (Cka1p) regulates vacuolar membrane protein Ycf1p function by phosphorylating Ser251. Salt stress reduces Cka1p activity, decreasing Ycf1p phosphorylation and inducing its function.
Area of Science:
- Cellular biology
- Molecular mechanisms of transport
- Protein regulation
Background:
- Yeast vacuolar membrane protein Ycf1p and mammalian MRP1 are ABCC transporters.
- Yeast casein kinase 2α (Cka1p) is implicated in negative regulation of Ycf1p via Ser251 phosphorylation.
Purpose of the Study:
- To provide strong evidence for Cka1p-mediated phosphorylation of Ycf1p at Ser251.
- To investigate the role of Cka1p in regulating Ycf1p function during salt stress.
Main Methods:
- Yeast genetics and in vivo phosphorylation assays.
- Biochemical assays using purified recombinant Cka1p and Ycf1p-derived peptides.
- Analysis of Ycf1p function under high salt stress conditions.
Main Results:
- Cka1p interacts with Ycf1p and phosphorylates a Ser251-containing peptide.
- Deletion of CKA1 reduces Ser251 phosphorylation in vivo.
- Ycf1p function is induced by salt stress, correlating with reduced Ser251 phosphorylation.
- Cka1p activity decreases under salt stress, leading to reduced Ycf1p phosphorylation.
Conclusions:
- Cka1p directly phosphorylates Ycf1p at Ser251, regulating its function.
- Decreased Cka1p activity and Ycf1p phosphorylation are key to inducing Ycf1p function during salt stress.
- This study reveals a novel role for Cka1p in yeast cellular salt stress response.
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