All Stories

  1. Reversible, functional amyloids: towards an understanding of their regulation in yeast and humans
  2. Protein kinase C and calcineurin cooperatively mediate cell survival under compressive mechanical stress
  3. Reversible protein aggregation is a protective mechanism to ensure cell cycle restart after stress
  4. Non-targeted metabolomic approach reveals two distinct types of metabolic responses to telomerase dysfunction in S. cerevisiae
  5. Erratum
  6. Guidelines for the use and interpretation of assays for monitoring autophagy (3rd edition)
  7. Inferring causal metabolic signals that regulate the dynamic TORC1-dependent transcriptome
  8. Cytosolic pH: A conserved regulator of cell growth?
  9. Cytosolic pH Regulates Cell Growth through Distinct GTPases, Arf1 and Gtr1, to Promote Ras/PKA and TORC1 Activity
  10. Cytosolic pH Regulated by Glucose Promotes V-ATPase Assembly
  11. A rapid and effective vignetting correction for quantitative microscopy
  12. In Scarcity and Abundance: Metabolic Signals Regulating Cell Growth
  13. Automatic Generation of Predictive Dynamic Models Reveals Nuclear Phosphorylation as the Key Msn2 Control Mechanism
  14. Mass spectrometry-based metabolomics of single yeast cells
  15. An integrated image analysis platform to quantify signal transduction in single cells
  16. The N-terminal domain of the V-ATPase subunit 'a' is regulated by pH in vitro and in vivo
  17. Unraveling condition-dependent networks of transcription factors that control metabolic pathway activity in yeast
  18. Cytosolic pH is a second messenger for glucose and regulates the PKA pathway through V-ATPase
  19. Recruitment of a chromatin remodelling complex by the Hog1 MAP kinase to stress genes
  20. Recruitment of a chromatin remodelling complex by the Hog1 MAP kinase to stress genes
  21. Nutrient signals driving cell growth
  22. Centrosome Separation and Central Spindle Assembly Act in Redundant Pathways that Regulate Microtubule Density and Trigger Cleavage Furrow Formation
  23. Cytokinesis: Regulated By Destruction