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Publication : Myo1c binds phosphoinositides through a putative pleckstrin homology domain.

First Author  Hokanson DE Year  2006
Journal  Mol Biol Cell Volume  17
Issue  11 Pages  4856-65
PubMed ID  16971510 Mgi Jnum  J:117964
Mgi Id  MGI:3698104 Doi  10.1091/mbc.E06-05-0449
Citation  Hokanson DE, et al. (2006) Myo1c binds phosphoinositides through a putative pleckstrin homology domain. Mol Biol Cell 17(11):4856-65
abstractText  Myo1c is a member of the myosin superfamily that binds phosphatidylinositol-4,5-bisphosphate (PIP(2)), links the actin cytoskeleton to cellular membranes and plays roles in mechano-signal transduction and membrane trafficking. We located and characterized two distinct membrane binding sites within the regulatory and tail domains of this myosin. By sequence, secondary structure, and ab initio computational analyses, we identified a phosphoinositide binding site in the tail to be a putative pleckstrin homology (PH) domain. Point mutations of residues known to be essential for polyphosphoinositide binding in previously characterized PH domains inhibit myo1c binding to PIP(2) in vitro, disrupt in vivo membrane binding, and disrupt cellular localization. The extended sequence of this binding site is conserved within other myosin-I isoforms, suggesting they contain this putative PH domain. We also characterized a previously identified membrane binding site within the IQ motifs in the regulatory domain. This region is not phosphoinositide specific, but it binds anionic phospholipids in a calcium-dependent manner. However, this site is not essential for in vivo membrane binding.
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