All Stories

  1. Poltergeist-Like 2 (PLL2)-dependent activation of herbivore defence distinguishes systemin from other immune signalling pathways
  2. The mechanism behind tenuazonic acid-mediated inhibition of plant plasma membrane H+-ATPase and plant growth
  3. Understanding the mechanistic basis of ameliorative effects of boron on salinity in barley (Hordeum vulgare)
  4. Ex vivostructures from spinach leaves
  5. Trichoderma harzianum Peptaibols Stimulate Plant Plasma Membrane H+-ATPase Activity
  6. The invariant chain CD74 protein is a cell surface binding partner of TIMP‐1 in breast cancer cells
  7. The evolution of plant proton pump regulation via the R domain may have facilitated plant terrestrialization
  8. A critical review on natural compounds interacting with the plant plasma membrane H + ‐ATPase ‐and their potential as biologicals in agriculture
  9. Corrigendum to: Proton and calcium pumping P-type ATPases and their regulation of plant responses to the environment
  10. Proton and calcium pumping P-type ATPases and their regulation of plant responses to the environment
  11. The PSY Peptide Family—Expression, Modification and Physiological Implications
  12. JAK3 Is Expressed in the Nucleus of Malignant T Cells in Cutaneous T Cell Lymphoma (CTCL)
  13. Live Imaging of Phosphate Levels in Arabidopsis Root Cells Expressing a FRET-Based Phosphate Sensor
  14. Evidence for multiple receptors mediating RALF‐triggered Ca 2+ signaling and proton pump inhibition
  15. Fungal toxin inhibits the plant PM H+ pump
  16. Cyclic AMP Pathway Activation and Extracellular Zinc Induce Rapid Intracellular Zinc Mobilization in Candida albicans
  17. Cover Feature: LEGO-Inspired Drug Design: Unveiling a Class of Benzo[d ]thiazoles Containing a 3,4-Dihydroxyphenyl Moiety as Plasma Membrane H+ -ATPase Inhibitors (ChemMedChem 1/2018)
  18. Tetrahydrocarbazoles are a novel class of potent P-type ATPase inhibitors with antifungal activity
  19. LEGO-Inspired Drug Design: Unveiling a Class of Benzo[d ]thiazoles Containing a 3,4-Dihydroxyphenyl Moiety as Plasma Membrane H+ -ATPase Inhibitors
  20. Activation of the LRR Receptor-Like Kinase PSY1R Requires Transphosphorylation of Residues in the Activation Loop
  21. Identification of Antifungal H+-ATPase Inhibitors with Effect on Plasma Membrane Potential
  22. Fusaric acid and analogues as Gram-negative bacterial quorum sensing inhibitors
  23. Cell-Type-Specific H+-ATPase Activity in Root Tissues Enables K+ Retention and Mediates Acclimation of Barley (Hordeum vulgare) to Salinity Stress
  24. Demethoxycurcumin Is A Potent Inhibitor of P-Type ATPases from Diverse Kingdoms of Life
  25. Plasma Membrane H + -ATPase Regulation in the Center of Plant Physiology
  26. Reduced expression of AtNUP62 nucleoporin gene affects auxin response in Arabidopsis
  27. Measuring H+ Pumping and Membrane Potential Formation in Sealed Membrane Vesicle Systems
  28. On a quest for stress tolerance genes: membrane transporters in sensing and adapting to hostile soils
  29. Specific Activation of the Plant P-type Plasma Membrane H+-ATPase by Lysophospholipids Depends on the Autoinhibitory N- and C-terminal Domains
  30. Abstract P5-07-08: Identification and characterization of a new TIMP-1 binding protein
  31. The plasma membrane H+-ATPase AHA2 contributes to the root architecture in response to different nitrogen supply
  32. Receptor kinase-mediated control of primary active proton pumping at the plasma membrane
  33. Polyamines cause plasma membrane depolarization, activate Ca2+-, and modulate H+-ATPase pump activity in pea roots
  34. Analysis of peptide PSY1 responding transcripts in the two Arabidopsis plant lines: wild type and psy1r receptor mutant
  35. Polyamines Depolarize the Membrane and Initiate a Cross-Talk Between Plasma Membrane Ca2+ and H+ Pumps
  36. Active Plasma Membrane P-type H+-ATPase Reconstituted into Nanodiscs Is a Monomer
  37. Isolation of Monodisperse Nanodisc-Reconstituted Membrane Proteins Using Free Flow Electrophoresis
  38. Perspectives for using genetically encoded fluorescent biosensors in plants
  39. Interaction of barley powdery mildew effector candidate CSEP0055 with the defence protein PR17c
  40. Live imaging of intra- and extracellular pH in plants using pHusion, a novel genetically encoded biosensor
  41. Measurements of intracellularATP provide new insight into the regulation of glycolysis in the yeast Saccharomyces cerevisiae
  42. Purification of Plant Plasma Membranes by Two-Phase Partitioning and Measurement of H+ Pumping
  43. Phosphosite Mapping of P-type Plasma Membrane H+-ATPase in Homologous and Heterologous Environments
  44. Endomembrane Ca2+-ATPases play a significant role in virus-induced adaptation to oxidative stress
  45. Phosphorylation of SOS3-Like Calcium-Binding Proteins by Their Interacting SOS2-Like Protein Kinases Is a Common Regulatory Mechanism in Arabidopsis
  46. Transporters and Pumps in Plant Signaling
  47. Plasma membrane Ca2+ transporters mediate virus-induced acquired resistance to oxidative stress
  48. Plant Proton Pumps: Regulatory Circuits Involving H+-ATPase and H+-PPase
  49. Plasma Membrane ATPases
  50. The Arabidopsis Chaperone J3 Regulates the Plasma Membrane H+-ATPase through Interaction with the PKS5 Kinase
  51. RIN4 Functions with Plasma Membrane H+-ATPases to Regulate Stomatal Apertures during Pathogen Attack
  52. Plasma membrane H+-ATPase-dependent citrate exudation from cluster roots of phosphate-deficient white lupin
  53. Manganese Efficiency in Barley: Identification and Characterization of the Metal Ion Transporter HvIRT1
  54. Na+- K+transport in roots under salt stress
  55. Root Plasma Membrane Transporters Controlling K+/Na+ Homeostasis in Salt-Stressed Barley
  56. Temporal Analysis of Sucrose-induced Phosphorylation Changes in Plasma Membrane Proteins of Arabidopsis
  57. The HvNAC6 transcription factor: a positive regulator of penetration resistance in barley and Arabidopsis
  58. Arabidopsis Protein Kinase PKS5 Inhibits the Plasma Membrane H+-ATPase by Preventing Interaction with 14-3-3 Protein
  59. Protein phosphatase 2A scaffolding subunit A interacts with plasma membrane H+-ATPase C-terminus in the same region as 14-3-3 protein
  60. Regulation of Plant Plasma Membrane H+- and Ca2+-ATPases by Terminal Domains
  61. The Binding Site for Regulatory 14-3-3 Protein in Plant Plasma Membrane H+-ATPase
  62. Phosphorylation-independent interaction between 14-3-3 protein and the plant plasma membrane H+-ATPase
  63. Binding of 14-3-3 Protein to the Plasma Membrane H+-ATPase AHA2 Involves the Three C-terminal Residues Tyr946-Thr-Val and Requires Phosphorylation of Thr947
  64. Summary
  65. P-Type H+- and Ca2+-ATPases in Plant Cells
  66. The 14-3-3 Protein Interacts Directly with the C-Terminal Region of the Plant Plasma Membrane H + -ATPase
  67. The 14-3-3 protein interacts directly with the C-terminal region of the plant plasma membrane H(+)-ATPase.
  68. Effect of the Phytotoxin Fusicoccin on Plant Plasma Membrane H+-ATPase Expressed in Yeast