Abstract
Almost all the Ca(2+)-dependent protein kinase activity in nuclei purified from etiolated pea (Pisum sativum, L.) plumules is present in a single enzyme that can be extracted from chromatin by 0.3 molar NaCl. This protein kinase can be further purified 80,000-fold by salt fractionation and high performance liquid chromatography, after which it has a high specific activity of about 100 picomoles per minute per microgram in the presence of Ca2+ and reaches half-maximal activation at about 3 x 10(-7) molar free Ca2+, without calmodulin. It is a monomer with a molecular weight near 90,000. It can efficiently use histone III-S, ribosomal S6 protein, and casein as artificial substrates, but it phosphorylates phosvitin only weakly. Its Ca(2+)-dependent kinase activity is half-maximally inhibited by 0.1 millimolar chlorpromazine, by 35 nanomolar K-252a and by 7 nanomolar staurosporine. It is insensitive to sphingosine, an inhibitor of protein kinase C, and to basic polypeptides that block other Ca(2+)-dependent protein kinases. It is not stimulated by exogenous phospholipids or fatty acids. In intact isolated pea nuclei it preferentially phosphorylates several chromatin-associated proteins, with the most phosphorylated protein band being near the same molecular weight (43,000) as a nuclear protein substrate whose phosphorylation has been reported to be stimulated by phytochrome in a calcium-dependent fashion.
Keywords
NASA Discipline Number 40-50
NASA Discipline Plant Biology
NASA Program Space Biology
Non-NASA Center
MeSH Terms
Calcium/metabolism
Calmodulin/metabolism
Cell Nucleus/enzymology
Chromatin/chemistry
Nuclear Proteins/analysis,metabolism
Peas/cytology,enzymology
Phosphorylation
Plant Proteins/analysis,metabolism
Protein Kinase C/metabolism
Protein Kinases/analysis,isolation & purification,metabolism
Chemicals
Calmodulin
Chromatin
Nuclear Proteins
Plant Proteins
Protein Kinases
calcium-dependent protein kinase
Protein Kinase C
Calcium
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Li H
Department of Botany, The University of Texas at Austin 78713, USA.
Dauwalder M
Roux S J
Investigators
1 investigators, click to expand
Roux S J
U TX, Austin, Dept Botany
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