Related references
Note: Only part of the references are listed.Myosin 1G (Myo1G) is a haematopoietic specific myosin that localises to the plasma membrane and regulates cell elasticity
Balaji Olety et al.
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An Experimentally Based Computer Search Identifies Unstructured Membrane-binding Sites in Proteins APPLICATION TO CLASS I MYOSINS, PAKS, AND CARMIL
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Myosin 1G Is an Abundant Class I Myosin in Lymphocytes Whose Localization at the Plasma Membrane Depends on Its Ancient Divergent Pleckstrin Homology (PH) Domain (Myo1PH)
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JOURNAL OF BIOLOGICAL CHEMISTRY (2008)
Immunostaining evidence for PI(4,5)P2 localization at the leading edge of chemoattractant-stimulated HL-60 cells
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A Rictor-Myo1c complex participates in dynamic cortical actin events in 3T3-L1 adipocytes
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Filopodia: molecular architecture and cellular functions
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Myosin I can act as a molecular force sensor
Joseph M. Laakso et al.
SCIENCE (2008)
Myosin VI targeting to clathrin-coated structures and dimerization is mediated by binding to disabled-2 and PtdIns(4,5)P2
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NATURE CELL BIOLOGY (2007)
Novel ZIP kinase isoform lacks leucine zipper
Norio Takamoto et al.
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS (2006)
Myo1c binds phosphoinositides through a putative pleckstrin homology domain
David E. Hokanson et al.
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Myo1c binds tightly and specifically to phosphatidylinositol 4,5-bisphosphate and inositol 1,4,5-trisphosphate
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PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA (2006)
Myosin 1b modulates the morphology and the protein transport within multi-vesicular sorting endosomes
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Expression of the unconventional myosin Myo1c alters sodium transport in M1 collecting duct cells
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Myosin-1a is critical for normal brush border structure and composition
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Myo1c is designed for the adaptation response in the inner ear
C Batters et al.
EMBO JOURNAL (2004)
Phosphatidylinositol-4,5-bisphosphate-rich plasma membrane patches organize active zones of endocytosis and ruffling in cultured adipocytes
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Structural determinants of phosphoinositide selectivity in splice variants of Grp1 family PH domains
TC Cronin et al.
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Myosin I and adaptation of mechanical transduction by the inner ear
PG Gillespie
PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY OF LONDON SERIES B-BIOLOGICAL SCIENCES (2004)
Unconventional myosin Myo1c promotes membrane fusion in a regulated exocytic pathway
A Bose et al.
MOLECULAR AND CELLULAR BIOLOGY (2004)
Hair cells require phosphatidylinositol 4,5-bisphosphate for mechanical transduction and adaptation
M Hirono et al.
NEURON (2004)
Espin cross-links cause the elongation of microvillus-type parallel actin bundles in vivo
PA Loomis et al.
JOURNAL OF CELL BIOLOGY (2003)
Phosphoinositide regulation of the actin cytoskeleton
HL Yin et al.
ANNUAL REVIEW OF PHYSIOLOGY (2003)
Glucose transporter recycling in response to insulin is facilitated by myosin Myo1c
A Bose et al.
NATURE (2002)
Dynamics of Myo1c (Myosin-Iβ) lipid binding and dissociation
NY Tang et al.
JOURNAL OF BIOLOGICAL CHEMISTRY (2002)
A chemical-genetic strategy implicates myosin-1c in adaptation by hair cells
JR Holt et al.
CELL (2002)
Motor domain-dependent localization of myo1b (myr-1)
NY Tang et al.
CURRENT BIOLOGY (2001)
Kinetic analyses of a truncated mammalian myosin I suggest a novel isomerization event preceding nucleotide binding
MA Geeves et al.
JOURNAL OF BIOLOGICAL CHEMISTRY (2000)
Truncation of a mammalian myosin I results in loss of Ca2+-sensitive motility
C Perreault-Micale et al.
JOURNAL OF BIOLOGICAL CHEMISTRY (2000)
Phosphatidylinositol 4,5-bisphoshate functions as a second messenger that regulates cytoskeleton-plasma membrane adhesion
D Raucher et al.
CELL (2000)