Publikation: Plasma Membrane H+-ATPase Activity in Spores,Germ Tubes, and Haustoria of the Rust Fungus Uromyces viciae-fabae
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Using plasma membrane-enriched vesicles, the properties of the H+-ATPase (EC 3.6.1.35) from the rust fungus Uromyces viciae-fabae were studied. The enzyme is strictly Mg2+-dependent and is inhibited by vanadate. The pH-optimum is at 6.7. By Western blot analysis using a monoclonal antibody against corn plasma membrane H+-ATPase a polypeptide of approximately 104 kDa could be detected. The vanadate-sensitive H+-ATPase activity of microsomal vesicles obtained from different stages of rust development was determined. Uredospores had only a very low enzyme activity (1.9 mmol Pi x mg-1 protein x h-1). In germ tubes the ATPase activity was about twofold higher (4.0 mmol Pi x mg-1 protein x h-1). An eightfold higher ATPase activity (16.1 mmol Pi x mg-1 protein x h-1) was found in microsomal vesicles from haustoria which had been isolated from rust-infected Vicia faba leaves. These results suggest, that the electrochemical gradient generated by the H+-ATPase of haustoria plays an important role for their function, possibly by promoting nutrient uptake from host cells.
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STRUCK, Christine, Matthias HAHN, Kurt MENDGEN, 1996. Plasma Membrane H+-ATPase Activity in Spores,Germ Tubes, and Haustoria of the Rust Fungus Uromyces viciae-fabae. In: Fungal Genetics and Biology. 1996, 20(1), pp. 30-35. ISSN 1087-1845. Available under: doi: 10.1006/fgbi.1996.0006BibTex
@article{Struck1996Plasm-6864, year={1996}, doi={10.1006/fgbi.1996.0006}, title={Plasma Membrane H+-ATPase Activity in Spores,Germ Tubes, and Haustoria of the Rust Fungus Uromyces viciae-fabae}, number={1}, volume={20}, issn={1087-1845}, journal={Fungal Genetics and Biology}, pages={30--35}, author={Struck, Christine and Hahn, Matthias and Mendgen, Kurt} }
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