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Physiological Reviews, Vol. 80, No. 1, January 2000, pp. 173-210
Copyright ©2000 by the American Physiological Society
Institut für Pharmakologie, Universität Köln, Köln; and Institut für Pharmakologie und Toxikologie, Universität Münster, Münster, Germany
Herzig, Stefan and
Joachim Neumann.
Effects of Serine/Threonine Protein Phosphatases on Ion
Channels in Excitable Membranes. Physiol. Rev. 80: 173-210, 2000.
This review
deals with the influence of serine/threonine-specific protein
phosphatases on the function of ion channels in the plasma membrane of
excitable tissues. Particular focus is given to developments of the
past decade. Most of the electrophysiological experiments have been
performed with protein phosphatase inhibitors. Therefore, a synopsis is
required incorporating issues from biochemistry, pharmacology, and
electrophysiology. First, we summarize the structural and biochemical
properties of protein phosphatase (types 1, 2A, 2B, 2C, and 3-7)
catalytic subunits and their regulatory subunits. Then the available
pharmacological tools (protein inhibitors, nonprotein inhibitors, and
activators) are introduced. The use of these inhibitors is discussed
based on their biochemical selectivity and a number of methodological
caveats. The next section reviews the effects of these tools on various
classes of ion channels (i.e., voltage-gated Ca2+ and
Na+ channels, various K+ channels,
ligand-gated channels, and anion channels). We delineate in which
cases a direct interaction between a protein phosphatase and a given
channel has been proven and where a more complex regulation is likely
involved. Finally, we present ideas for future research and possible
pathophysiological implications.
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