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May 7, 2001The Journal of Cell Biology294 citationsOpen Access

Phosphorylation-Dependent Regulation of Ryanodine Receptors

SMSteven O. MarxSRSteven ReikenYHYuji Hisamatsu

Key Points

  • This study aims to investigate the role of phosphorylation in regulating ryanodine receptors and the mechanisms involved in kinase and phosphatase targeting.
  • Identified a novel mechanism for kinase and phosphatase binding to ryanodine receptors via leucine zipper motifs.
  • Mapped protein binding sites on ion channels.
  • Developed tools for studying the role of kinases and phosphatases in ion channel modulation.
  • Disruption of kinase binding via leucine zipper motifs prevents phosphorylation of ryanodine receptor 2.
  • Proposes a method for predicting kinases and phosphatases that regulate specific ion channels.
  • Facilitates rapid identification of new targeting proteins for kinases and phosphatases.

Abstract

Ryanodine receptors (RyRs), intracellular calcium release channels required for cardiac and skeletal muscle contraction, are macromolecular complexes that include kinases and phosphatases. Phosphorylation/dephosphorylation plays a key role in regulating the function of many ion channels, including RyRs. However, the mechanism by which kinases and phosphatases are targeted to ion channels is not well understood. We have identified a novel mechanism involved in the formation of ion channel macromolecular complexes: kinase and phosphatase targeting proteins binding to ion channels via leucine/isoleucine zipper (LZ) motifs. Activation of kinases and phosphatases bound to RyR2 via LZs regulates phosphorylation of the channel, and disruption of kinase binding via LZ motifs prevents phosphorylation of RyR2. Elucidation of this new role for LZs in ion channel macromolecular complexes now permits: (a) rapid mapping of kinase and phosphatase targeting protein binding sites on ion channels; (b) predicting which kinases and phosphatases are likely to regulate a given ion channel; (c) rapid identification of novel kinase and phosphatase targeting proteins; and (d) tools for dissecting the role of kinases and phosphatases as modulators of ion channel function.

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Cite This Study

Marx et al. (2001) studied this question.

synapsesocial.com/papers/6a20cb3fe3e6025b589a8940https://doi.org/10.1083/jcb.153.4.699
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