Article
- The EMBO Journal (2002) 21, 920 - 929
- doi:10.1093/emboj/21.5.920
Subject Categories:
The Ppz protein phosphatases are key regulators of K+ and pH homeostasis: implications for salt tolerance, cell wall integrity and cell cycle progression
Lynne Yenush1, José M. Mulet1, Joaquín Ariño2 and Ramón Serrano1
- Instituto de Biología Molecular y Celular de Plantas, Universidad Politécnica de Valencia-CSIC, Camino de Vera s/n, E-46022 Valencia Spain
- Departament de Bioquímica i Biologia Molecular, Fac. Veterinària, Universitat Autònoma de Barcelona, Bellaterra 08193, Barcelona, Spain
Correspondence to:
Ramón Serrano, E-mail: serrano@ibmcp.upv.es
Received 6 December 2001; Accepted 11 January 2002; Revised 11 January 2002
Abstract
The yeast Ppz protein phosphatases and the Hal3p inhibitory subunit are important determinants of salt tolerance, cell wall integrity and cell cycle progression. We present several lines of evidence showing that these disparate phenotypes are connected by the fact that Ppz regulates K+ transport. First, salt tolerance, cell wall integrity and cell cycle phenotypes of Ppz mutants are dependent on the Trk K+ transporters. Secondly, Ppz mutants exhibit altered activity of the Trk system, as measured by rubidium uptake. Thirdly, Ppz mutants exhibit altered intracellular K+ and pH, as expected from H+ efflux providing electrical balance during K+ uptake. Our unifying picture of Ppz phenotypes contends that activation of Trk by decreased Ppz activity results in plasma membrane depolarization (reducing uptake of toxic cations), increased intracellular K+ and turgor (compromising cell integrity), and increased intracellular pH (augmenting the expression of pH-regulated genes and facilitating
-factor recovery). In addition to providing a coherent explanation for all Ppz-dependent phenotypes, our results provide evidence for a causal relationship between intracellular cation homeostasis and a potential cell cycle checkpoint.
Keywords:
- cell cycle,
- halotolerance,
- pH,
- phosphatase,
- potassium



