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Research ArticleMembranes and Bioenergetics
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Identification and Characterization of the Ca2+-ATPase which Drives Active Transport of Ca2+ at the Plasma Membrane of Radish Seedlings

Franca Rasi-Caldogno, Maria Chiara Pugliarello, Claudio Olivari, Maria Ida De Michelis
Franca Rasi-Caldogno
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Maria Chiara Pugliarello
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Claudio Olivari
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Maria Ida De Michelis
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Published August 1989. DOI: https://doi.org/10.1104/pp.90.4.1429

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Abstract

In microsomes from 24-hour-old radish (Raphanus sativus L.) seedlings ATP-dependent Ca2+ uptake occurs only in inside-out plasma membrane vesicles (F Rasi-Caldogno, MC Pugliarello, MI De Michelis [1987] Plant Physiol 83: 994-1000). A Ca2+-dependent ATPase activity can be shown in the same microsomes, when assays are performed at pH 7.5. The Ca2+-dependent ATPase is stimulated by the Ca2+ ionophore A23187 and is localized at the plasma membrane. Ca2+-dependent ATPase activity and ATP-dependent Ca2+ uptake present very similar saturation kinetics with erythrosin B (50% inhibition at about 0.1 micromolar), free Ca2+ (half-maximal rate at about 70 nanomolar), and MgATP (Km 15-20 micromolar). Ca2+ uptake can be sustained by GTP or ITP at about 60% the rate measured in the presence of ATP; only very low Ca2+ uptake is sustained by CTP or UTP and none by ADP. These results indicate that the Ca2+-ATPase described in this paper is the enzyme which drives active transport of Ca2+ at the plasma membrane of higher plants.

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Identification and Characterization of the Ca2+-ATPase which Drives Active Transport of Ca2+ at the Plasma Membrane of Radish Seedlings
Franca Rasi-Caldogno, Maria Chiara Pugliarello, Claudio Olivari, Maria Ida De Michelis
Plant Physiology Aug 1989, 90 (4) 1429-1434; DOI: 10.1104/pp.90.4.1429

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Identification and Characterization of the Ca2+-ATPase which Drives Active Transport of Ca2+ at the Plasma Membrane of Radish Seedlings
Franca Rasi-Caldogno, Maria Chiara Pugliarello, Claudio Olivari, Maria Ida De Michelis
Plant Physiology Aug 1989, 90 (4) 1429-1434; DOI: 10.1104/pp.90.4.1429
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Plant Physiology
Vol. 90, Issue 4
August 1989
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More in this TOC Section

  • Isolation and Characterization of the Tricarboxylate Transporter from Pea Mitochondria
  • Effects of Solubilization on the Inhibition of the P-Type ATPase from Maize Roots by N-(Ethoxycarbonyl)-2-Ethoxy-1,2-Dihydroquinoline
  • Reconstitution and Characterization of a Calmodulin-Stimulated Ca2+-Pumping ATPase Purified from Brassica oleracea L.
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