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Research ArticleMetabolism and Enzymology
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A Calcium-Dependent but Calmodulin-Independent Protein Kinase from Soybean

Alice C. Harmon, Cindy Putnam-Evans, Milton J. Cormier
Alice C. Harmon
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Cindy Putnam-Evans
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Milton J. Cormier
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Published April 1987. DOI: https://doi.org/10.1104/pp.83.4.830

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Abstract

A calcium-dependent protein kinase activity from suspension-cultured soybean cells (Glycine max L. Wayne) was shown to be dependent on calcium but not calmodulin. The concentrations of free calcium required for half-maximal histone H1 phosphorylation and autophosphorylation were similar (≈2 micromolar). The protein kinase activity was stimulated 100-fold by ≥10 micromolar-free calcium. When exogenous soybean or bovine brain calmodulin was added in high concentration (1 micromolar) to the purified kinase, calcium-dependent and -independent activities were weakly stimulated (≤2-fold). Bovine serum albumin had a similar effect on both activities. The kinase was separated from a small amount of contaminating calmodulin by sodium dodecyl sulfate polyacrylamide gel electrophoresis. After renaturation the protein kinase autophosphorylated and phosphorylated histone H1 in a calcium-dependent manner. Following electroblotting onto nitrocellulose, the kinase bound 45Ca2+ in the presence of KCl and MgCl2, which indicates that the kinase itself is a high-affinity calcium-binding protein. Also, the mobility of one of two kinase bands in SDS gels was dependent on the presence of calcium. Autophosphorylation of the calmodulin-free kinase was inhibited by the calmodulin-binding compound N-(6-aminohexyl)-5-chloro-1-naphthalene sulfonamide (W-7), showing that the inhibition of activity by W-7 is independent of calmodulin. These results show that soybean calcium-dependent protein kinase represents a new class of protein kinase which requires calcium but not calmodulin for activity.

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A Calcium-Dependent but Calmodulin-Independent Protein Kinase from Soybean
Alice C. Harmon, Cindy Putnam-Evans, Milton J. Cormier
Plant Physiology Apr 1987, 83 (4) 830-837; DOI: 10.1104/pp.83.4.830

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A Calcium-Dependent but Calmodulin-Independent Protein Kinase from Soybean
Alice C. Harmon, Cindy Putnam-Evans, Milton J. Cormier
Plant Physiology Apr 1987, 83 (4) 830-837; DOI: 10.1104/pp.83.4.830
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Plant Physiology
Vol. 83, Issue 4
April 1987
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More in this TOC Section

  • The Metabolism of Gibberellin A20 to Gibberellin A1 by Tall and Dwarf Mutants of Oryza sativa and Arabidopsis thaliana
  • A Mutation at the fad8 Locus of Arabidopsis Identifies a Second Chloroplast [omega]-3 Desaturase
  • The 58-Kilodalton Calmodulin-Binding Glutamate Decarboxylase Is a Ubiquitous Protein in Petunia Organs and Its Expression Is Developmentally Regulated
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