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    Date Issued1999 (1)1998 (1)AuthorFurthmayr, H. (2)
    Huang, L. (2)
    Luna, Elizabeth J. (2)Pestonjamasp, Kersi N. (2)Cui, X. (1)View MoreUMass Chan AffiliationDepartment of Cell Biology (2)Document TypeJournal Article (2)KeywordActins (2)Amino Acid Sequence (2)Cell Biology (2)Humans (2)Life Sciences (2)View MoreJournalBiochemical and biophysical research communications (1)Molecular biology of the cell (1)

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

    Nakamura, F.; Huang, L.; Pestonjamasp, Kersi N.; Luna, Elizabeth J.; Furthmayr, H. (1999-08-06)
    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.
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    Merlin differs from moesin in binding to F-actin and in its intra- and intermolecular interactions

    Huang, L.; Ichimaru, E.; Pestonjamasp, Kersi N.; Cui, X.; Nakamura, H.; Lo, G. Y.; Lin, F. I.; Luna, Elizabeth J.; Furthmayr, H. (1998-08-15)
    The neurofibromatosis type 2 (NF2) tumor suppressor gene encodes merlin, a protein with homology to the cell membrane/F-actin linking proteins, moesin, ezrin and radixin. Unlike these closely related proteins, merlin lacks a C-terminal F-actin binding site detectable by actin blot overlays, and the GFP-tagged merlin C-terminal domain co-distributes with neither stress fibers nor cortical actin in NIH3T3 cells. Merlin also differs from the other three proteins in its inter- and intramolecular domain interactions, as shown by in vitro binding and yeast two-hybrid assays. As is true for ezrin, moesin and radixin, the N- and C-terminal domains of merlin type 1 bind to each other. However, full-length merlin and its N- and C-terminal domains, as well as the C-terminal domain of ezrin, interact with other full-length merlin type 1 molecules, and its C-terminal domain interacts with itself. Merlin 1 function in cells may thus depend on intra- and intermolecular interactions and their modulation, which include interactions with other members of this protein family.
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