pH modulates interaction of 14-3-3 proteins with pollen plasma membrane H+ ATPases independently from phosphorylation

Author:

Pertl-Obermeyer Heidi12ORCID,Gimeno Ana1,Kuchler Verena1ORCID,Servili Evrim13ORCID,Huang Shuai14,Fang Han15,Lang Veronika16ORCID,Sydow Katharina1,Pöckl Magdalena1,Schulze Waltraud X7ORCID,Obermeyer Gerhard1ORCID

Affiliation:

1. Membrane Biophysics, Department of Biosciences, University of Salzburg, Billrothstr. 11, 5020 Salzburg, Austria

2. MorphoPhysics, Department of Chemistry and Physics of Materials, University of Salzburg, Jakob-Haringer-Str. 2a, 5020 Salzburg, Austria

3. Inst. Recherche Experimentale & Clinique, University of Louvain, Ave. Hippocrate, Woluwe-Saint Lambert, Belgium

4. Southern University of Science and Technology, Shenzen, PR China

5. Spinal Chord Injury & Tissue Regeneration Centre, Paracelsus Medical University, Strubergasse, Salzburg, Austria

6. STRATEC GmbH, Sonystraße 20, Anif, Austria

7. Plant Systems Biology, University of Hohenheim, Garbenstraße 30, 70599 Stuttgart, Germany

Abstract

Abstract Pollen grains transport the sperm cells through the style tissue via a fast-growing pollen tube to the ovaries where fertilization takes place. Pollen tube growth requires a precisely regulated network of cellular as well as molecular events including the activity of the plasma membrane H+ ATPase, which is known to be regulated by reversible protein phosphorylation and subsequent binding of 14-3-3 isoforms. Immunodetection of the phosphorylated penultimate threonine residue of the pollen plasma membrane H+ ATPase (LilHA1) of Lilium longiflorum pollen revealed a sudden increase in phosphorylation with the start of pollen tube growth. In addition to phosphorylation, pH modulated the binding of 14-3-3 isoforms to the regulatory domain of the H+ ATPase, whereas metabolic components had only small effects on 14-3-3 binding, as tested with in vitro assays using recombinant 14-3-3 isoforms and phosphomimicking substitutions of the threonine residue. Consequently, local H+ influxes and effluxes as well as pH gradients in the pollen tube tip are generated by localized regulation of the H+ ATPase activity rather than by heterogeneous localized distribution in the plasma membrane.

Funder

Austrian Research Fund

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

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