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    Regulation of F-actin binding to platelet moesin in vitro by both phosphorylation of threonine 558 and polyphosphatidylinositides

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    Authors
    Nakamura, F.
    Huang, L.
    Pestonjamasp, Kersi N.
    Luna, Elizabeth J.
    Furthmayr, H.
    UMass Chan Affiliations
    Department of Cell Biology
    Document Type
    Journal Article
    Publication Date
    1999-08-06
    Keywords
    Actins
    Amino Acid Sequence
    Biochemistry
    Blood Platelets
    Cytoskeleton
    Detergents
    Humans
    Microfilament Proteins
    Molecular Sequence Data
    Phosphatidylinositol 4,5-Diphosphate
    Phosphatidylinositols
    Phosphorylation
    Quaternary Ammonium Compounds
    Threonine
    Cell Biology
    Life Sciences
    Medicine and Health Sciences
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    Abstract
    Activation of human platelets with thrombin transiently increases phosphorylation at (558)threonine of moesin as determined with phosphorylation state-specific antibodies. This specific modification is completely inhibited by the kinase inhibitor staurosporine and maximally promoted by the phosphatase inhibitor calyculin A, making it possible to purify the two forms of moesin to homogeneity. Blot overlay assays with F-actin probes labeled with either [32P]ATP or 125I show that only phosphorylated moesin interacts with F-actin in total platelet lysates, in moesin antibody immunoprecipitates, and when purified. In the absence of detergents, both forms of the isolated protein are aggregated. Phosphorylated, purified moesin co-sediments with alpha- or beta/gamma-actin filaments in cationic, but not in anionic, nonionic, or amphoteric detergents. The interaction affinity is high (Kd, approximately 1.5 nM), and the maximal moesin:actin stoichiometry is 1:1. This interaction is also observed in platelets extracted with cationic but not with nonionic detergents. In 0.1% Triton X-100, F-actin interacts with phosphorylated moesin only in the presence of polyphosphatidylinositides. Thus, both polyphosphatidylinositides and phosphorylation can activate moesin's high-affinity F-actin binding site in vitro. Dual regulation by both mechanisms may be important for proper cellular control of moesin-mediated linkages between the actin cytoskeleton and the plasma membrane.
    Source

    Mol Biol Cell. 1999 Aug;10(8):2669-85.

    DOI
    10.1091/mbc.10.8.2669
    Permanent Link to this Item
    http://hdl.handle.net/20.500.14038/50776
    PubMed ID
    10436021
    Related Resources

    Link to article in PubMed

    ae974a485f413a2113503eed53cd6c53
    10.1091/mbc.10.8.2669
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    UMass Chan Faculty and Researcher Publications
    Radiology Publications
    Luna Lab

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