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Research ArticleMembranes and Bioenergetics
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Plasma Membrane Ca-ATPase of Radish Seedlings

I. Biochemical Characterization Using ITP as a Substrate

Antonella Carnelli, Maria I. De Michelis, Franca Rasi-Caldogno
Antonella Carnelli
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Maria I. De Michelis
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Franca Rasi-Caldogno
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Published March 1992. DOI: https://doi.org/10.1104/pp.98.3.1196

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Abstract

In this work, we exploited the capability of the plasma membrane Ca-ATPase to utilize ITP as a substrate to study its characteristics in plasma membrane vesicles purified from radish (Raphanus sativus L.) seedlings. The majority of the ITPase activity of plasma membrane was Ca2+-dependent. The Ca2+-dependent ITPase activity was Mg2+-dependent and was stimulated by the calcium ionophore A23187. It was inhibited by erythrosin B (concentration giving 50% inhibition, 50 nanomolar) and by vanadate (concentration giving 50% inhibition, 3 micromolar) and displayed a broad pH optimum around pH 7.2 to 7.5. Both the hydrolytic and the transport activity of the plasma membrane Ca-ATPase were half-saturated by Ca2+ in the micromolar concentration range. No major effect of EGTA on the saturation kinetics of the enzyme was observed. The affinity of the plasma membrane Ca-ATPase for Ca2+ was about fourfold higher at pH 7.5 than at pH 6.9. The Ca2+-dependent ITPase activity was stimulated about twofold by polyoxyethylene 20 cetyl ether, although it was inhibited by Triton X-100 and by lysolecithin.

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Plasma Membrane Ca-ATPase of Radish Seedlings
Antonella Carnelli, Maria I. De Michelis, Franca Rasi-Caldogno
Plant Physiology Mar 1992, 98 (3) 1196-1201; DOI: 10.1104/pp.98.3.1196

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Plasma Membrane Ca-ATPase of Radish Seedlings
Antonella Carnelli, Maria I. De Michelis, Franca Rasi-Caldogno
Plant Physiology Mar 1992, 98 (3) 1196-1201; DOI: 10.1104/pp.98.3.1196
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Plant Physiology
Vol. 98, Issue 3
March 1992
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More in this TOC Section

  • Short-Term Experiments on Ion Transport by Seedlings and Excised Roots
  • Photosystem II Core Phosphorylation Heterogeneity, Differential Herbicide Binding, and Regulation of Electron Transfer in Photosystem II Preparations from Spinach
  • Effects of Deuterium Oxide on Growth, Proton Extrusion, Potassium Influx, and in Vitro Plasma Membrane Activities in Maize Root Segments
Show more Membranes and Bioenergetics

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