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2. The β subunit of yeast AMP-activated protein kinase directs substrate specificity in response to alkaline stress.

3. Activation and inhibition of Snf1 kinase activity by phosphorylation within the activation loop.

4. 2-Deoxyglucose impairs Saccharomyces cerevisiae growth by stimulating Snf1-regulated and α-arrestin-mediated trafficking of hexose transporters 1 and 3.

5. Genetic analysis of resistance and sensitivity to 2-deoxyglucose in Saccharomyces cerevisiae.

6. Ligand binding to the AMP-activated protein kinase active site mediates protection of the activation loop from dephosphorylation.

7. Subunit and domain requirements for adenylate-mediated protection of Snf1 kinase activation loop from dephosphorylation.

8. Reg1 protein regulates phosphorylation of all three Snf1 isoforms but preferentially associates with the Gal83 isoform.

9. ADP regulates SNF1, the Saccharomyces cerevisiae homolog of AMP-activated protein kinase.

10. Differential roles of the glycogen-binding domains of beta subunits in regulation of the Snf1 kinase complex.

11. A chemical genomics study identifies Snf1 as a repressor of GCN4 translation.

12. Access denied: Snf1 activation loop phosphorylation is controlled by availability of the phosphorylated threonine 210 to the PP1 phosphatase.

13. Subunits of the Snf1 kinase heterotrimer show interdependence for association and activity.

14. Regulatory domains of Snf1-activating kinases determine pathway specificity.

15. Purification and characterization of the three Snf1-activating kinases of Saccharomyces cerevisiae.

16. Global analysis of protein phosphorylation in yeast.

17. Snf1 kinase complexes with different beta subunits display stress-dependent preferences for the three Snf1-activating kinases.

18. Elm1p is one of three upstream kinases for the Saccharomyces cerevisiae SNF1 complex.

19. Yeast Pak1 kinase associates with and activates Snf1.

20. Isolation of mutations in the catalytic domain of the snf1 kinase that render its activity independent of the snf4 subunit.

21. Purification and characterization of Snf1 kinase complexes containing a defined Beta subunit composition.

22. Regulation of Snf1 kinase. Activation requires phosphorylation of threonine 210 by an upstream kinase as well as a distinct step mediated by the Snf4 subunit.

23. beta-subunits of Snf1 kinase are required for kinase function and substrate definition.

24. Std1 and Mth1 proteins interact with the glucose sensors to control glucose-regulated gene expression in Saccharomyces cerevisiae.

25. Identification of a calcineurin-independent pathway required for sodium ion stress response in Saccharomyces cerevisiae.

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