AbstractMyosin 1E is one of two “long-tailed” human Class I myosins that contain an SH3 domain within the tail region. SH3 domains of yeast and amoeboid myosins I interact with activators of the Arp2/3 complex, an important regulator of actin polymerization. No binding partners for the SH3 domains of myosins I have been identified in higher eukaryotes. In the current study, we show that two proteins with prominent functions in endocytosis, synaptojanin-1 and dynamin, bind to the SH3 domain of human Myo1E. Myosin 1E co-localizes with clathrin- and dynamin-containing puncta at the plasma membrane and this co-localization requires an intact SH3 domain. Expression of Myo1E tail, which acts in a dominant-negative manner, inhibits endocytosis of ...
AbstractThe GTPase dynamin plays an essential role in clathrin-mediated endocytosis [1–3]. Substanti...
SummaryThe GTPase dynamin, a key player in endocytic membrane fission, interacts with numerous prote...
In Saccharomyces cerevisiae, dynamic complexes of multiple proteins that assemble in cortical patche...
AbstractMyosin 1E is one of two “long-tailed” human Class I myosins that contain an SH3 domain withi...
Clathrin-mediated endocytosis is a conserved process by which eukaryotic cells take up molecules fro...
ABSTRACT Myosin 1E (Myo1E) is recruited to sites of clathrin-mediated endocytosis coinci-dent with a...
AbstractBackground: Receptor-mediated endocytosis appears to require the GTP-binding protein dynamin...
AbstractWe previously identified two forms of endocytosis using capacitance measurements in chromaff...
AbstractThe integrity of the actin cytoskeleton and associated motor proteins are essential for the ...
Myosin VI (myo6) is the only actin-based molecular motor that translocates along actin filaments tow...
AbstractThe dynamin GTPase is required for clathrin-dependent, receptor-mediated endocytosis. Exciti...
Using real-time TIRF microscopy imaging, we identify sites of clathrin and dynamin-independent CLIC/...
SummaryActin polymerization powers membrane deformation during many processes, including clathrin-me...
Ever since the discovery of class I myosins, the first nonmuscle myosins, about 30 years ago, the hi...
AbstractGenetic analysis of endocytosis in yeast early pointed to the essential role of actin in the...
AbstractThe GTPase dynamin plays an essential role in clathrin-mediated endocytosis [1–3]. Substanti...
SummaryThe GTPase dynamin, a key player in endocytic membrane fission, interacts with numerous prote...
In Saccharomyces cerevisiae, dynamic complexes of multiple proteins that assemble in cortical patche...
AbstractMyosin 1E is one of two “long-tailed” human Class I myosins that contain an SH3 domain withi...
Clathrin-mediated endocytosis is a conserved process by which eukaryotic cells take up molecules fro...
ABSTRACT Myosin 1E (Myo1E) is recruited to sites of clathrin-mediated endocytosis coinci-dent with a...
AbstractBackground: Receptor-mediated endocytosis appears to require the GTP-binding protein dynamin...
AbstractWe previously identified two forms of endocytosis using capacitance measurements in chromaff...
AbstractThe integrity of the actin cytoskeleton and associated motor proteins are essential for the ...
Myosin VI (myo6) is the only actin-based molecular motor that translocates along actin filaments tow...
AbstractThe dynamin GTPase is required for clathrin-dependent, receptor-mediated endocytosis. Exciti...
Using real-time TIRF microscopy imaging, we identify sites of clathrin and dynamin-independent CLIC/...
SummaryActin polymerization powers membrane deformation during many processes, including clathrin-me...
Ever since the discovery of class I myosins, the first nonmuscle myosins, about 30 years ago, the hi...
AbstractGenetic analysis of endocytosis in yeast early pointed to the essential role of actin in the...
AbstractThe GTPase dynamin plays an essential role in clathrin-mediated endocytosis [1–3]. Substanti...
SummaryThe GTPase dynamin, a key player in endocytic membrane fission, interacts with numerous prote...
In Saccharomyces cerevisiae, dynamic complexes of multiple proteins that assemble in cortical patche...