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August 1, 1983Journal of Biological Chemistry67 citationsOpen Access

Purification and characterization of a myosin I heavy chain kinase from Acanthamoeba castellanii.

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JHJohn A. HammerHeart Failure / CardiomyopathyJAJoseph AlbanesiThe University of Texas Southwestern Medical CenterEKEdward D. KornNational Institutes of Health

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Abstract

In previous work from this laboratory, a partially purified protein kinase from the soil amoeba Acanthamoeba castellanii was shown to phosphorylate the heavy chain of the two single-headed Acanthamoeba myosin isoenzymes, myosin IA and IB, resulting in a 10- to 20-fold increase in their actin-activated Mg2+-ATPase activities (Maruta, H., and Korn, E.D. (1977) J. Biol. Chem. 252, 8329-8332). A myosin I heavy chain kinase has now been purified to near homogeneity from Acanthamoeba by chromatography on DE-52 cellulose, phosphocellulose, and Procion red dye, followed by chromatography on histone-Sepharose. Myosin I heavy chain kinase contains a single polypeptide of 107,000 Da by electrophoretic analysis. Molecular sieve chromatography yields a Stokes radius of 4.1 nm, consistent with a molecular weight of 107,000 for a native protein with a frictional ratio of approximately 1.3:1. The kinase catalyzes the incorporation of 0.9 to 1.0 mol of phosphate into the heavy chain of both myosins IA and IB. Phosphoserine has been shown to be the phosphorylated amino acid in myosin IB. The kinase has highest specific activity toward myosin IA and IB, about 3-4 mumol of phosphate incorporated/min/mg (30 degrees C) at concentrations of myosin I that are well below saturating levels. The kinase also phosphorylates histone 2A, isolated smooth muscle light chains, and, to a very small extent, casein, but has no activity toward phosvitin or myosin II, a third Acanthamoeba myosin isoenzyme with a very different structure from myosin IA and IB. Myosin I heavy chain kinase requires Mg2+ but is not dependent on Ca2+, Ca2+/calmodulin, or cAMP for activity. The kinase undergoes an apparent autophosphorylation.

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Cite This Study

Hammer et al. (1983) studied this question.

synapsesocial.com/papers/6a208eecb15f64b498301f5ehttps://doi.org/10.1016/s0021-9258(17)44620-5
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Purification and characterization of actin-activatable, Ca2+-sensitive myosin II from Acanthamoeba.1981 · 72 citations
  2. 2Acanthamoeba cofactor protein is a heavy chain kinase required for actin activation of the Mg2+-ATPase activity of Acanthamoeba myosin I1977 · 126 citations
  3. 3Requirement of Phosphorylation of Physarum Myosin Heavy Chain for Thick Filament Formation, Actin Activation of Mg2+-ATPase Activity, and Ca2+-Inhibitory Superprecipitation121983 · 56 citations
  4. 4Protein Phosphorylation Catalyzed by Cyclic AMP-Dependent and Cyclic GMP-Dependent Protein Kinases1980 · 200 citations
  5. 5Peptide maps of the myosin isoenzymes of Acanthamoeba castellanii.1979 · 30 citations