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Research ArticleMembranes and Bioenergetics
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Selective Delipidation of the Plasma Membrane by Surfactants

Enrichment of Sterols and Activation of ATPase

Richard P. Sandstrom, Robert E. Cleland
Richard P. Sandstrom
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Robert E. Cleland
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Published August 1989. DOI: https://doi.org/10.1104/pp.90.4.1524

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Abstract

The influence of plasma membrane lipid components on the activity of the H+-ATPase has been studied by determining the effect of surfactants on membrane lipids and ATPase activity of oat (Avena sativa L.) root plasma membrane vesicles purified by a two-phase partitioning procedure. Triton X-100, at 25 to 1 (weight/weight) Triton to plasma membrane protein, an amount that causes maximal activation of the ATPase in the ATPase assay, extracted 59% of the membrane protein but did not solubilize the bulk of the ATPase. The Triton-insoluble proteins had associated with them, on a micromole per milligram protein basis, only 14% as much phospholipid, but 38% of the glycolipids and sterols, as compared with the native membranes. The Triton insoluble ATPase could still be activated by Triton X-100. When solubilized by lysolecithin, there were still sterols associated with the ATPase fraction. Free sterols were found associated with the ATPase in the same relative proportions, whether treated with surfactants or not. We suggest that surfactants activate the ATPase by altering the hydrophobic environment around the enzyme. We propose that sterols, through their interaction with the ATPase, may be essential for ATPase activity.

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Selective Delipidation of the Plasma Membrane by Surfactants
Richard P. Sandstrom, Robert E. Cleland
Plant Physiology Aug 1989, 90 (4) 1524-1531; DOI: 10.1104/pp.90.4.1524

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Selective Delipidation of the Plasma Membrane by Surfactants
Richard P. Sandstrom, Robert E. Cleland
Plant Physiology Aug 1989, 90 (4) 1524-1531; DOI: 10.1104/pp.90.4.1524
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Plant Physiology
Vol. 90, Issue 4
August 1989
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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
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