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Identification of three phosphorylation sites on each heavy chain of Acanthamoeba myosin II

Insights

Phosphorylation of Acanthamoeba myosin II heavy chains by a specific kinase inhibits its actin-activated Mg2+-ATPase activity. Two synergistic phosphorylation sites on the myosin II heavy chain are key to this inhibition.

Area of Science:

  • Biochemistry
  • Molecular Biology
  • Cell Biology

Background:

  • Actin-activated Mg2+-ATPase activity of Acanthamoeba myosin II is regulated by phosphorylation.
  • Previous studies indicated inhibition by phosphorylation of heavy chains.

Purpose of the Study:

  • To investigate the role of phosphorylation in regulating Acanthamoeba myosin II activity.
  • To identify the specific phosphorylation sites and their effect on enzyme activity.

Main Methods:

  • Purification of a kinase preparation from Acanthamoeba.
  • In vitro phosphorylation of purified myosin II heavy chains.
  • 32P-labeling and tryptic digestion followed by two-dimensional peptide mapping.
  • Assay of actin-activated Mg2+-ATPase activity.

Main Results:

  • Acanthamoeba kinase phosphorylates 3 mol of phosphate per mole of myosin II heavy chain.
  • Two in vitro phosphorylation sites correspond to major in vivo sites.
  • In vitro phosphorylation completely inhibits actin-activated Mg2+-ATPase activity.
  • Myosin II can be reversibly switched between active and inactive states via dephosphorylation and rephosphorylation.

Conclusions:

  • Two specific phosphorylation sites on the myosin II heavy chain act synergistically to inhibit actin-activated Mg2+-ATPase activity.
  • Phosphorylation is a critical regulatory mechanism for Acanthamoeba myosin II function.

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