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RALA:GTP binds MYO1C:CALM1 and activates MYO1C
Stable Identifier
R-HSA-2316349
Type
Reaction [binding]
Species
Homo sapiens
Compartment
cytoplasmic vesicle membrane
,
cytosol
ReviewStatus
5/5
Locations in the PathwayBrowser
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Vesicle-mediated transport (Homo sapiens)
Membrane Trafficking (Homo sapiens)
Translocation of SLC2A4 (GLUT4) to the plasma membrane (Homo sapiens)
RALA:GTP binds MYO1C:CALM1 and activates MYO1C (Homo sapiens)
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The layout of this reaction may differ from that in the pathway view due to the constraints in pathway layout
As inferred from mouse, insulin causes phosphorylation and inactivation of the Ral GTPase activating complex RGC, causing RALA:GTP to accumulate and associate with the unconventional myosin MYO1C. MYO1C, with calmodulin as a light chain, motors across cortical actin and interacts with the exocyst complex to tether vesicles at the plasma membrane (Chen et al. 2007).
Participants
Input
f-actin (ADP) [cytosol]
(Homo sapiens)
GGC-RALA:GTP [cytoplasmic vesicle membrane]
(Homo sapiens)
MYO1C:CALM1 [cytosol]
(Homo sapiens)
Output
GGC-RALA:GTP:MYO1C:Calmodulin:F-actin [cytoplasmic vesicle membrane]
(Homo sapiens)
Participates
as an event of
Translocation of SLC2A4 (GLUT4) to the plasma membrane (Homo sapiens)
Inferred From
RalA:GTP binds Myo1c:Calm1 and F-actin (Mus musculus)
Authored
May, B (2012-05-27)
Reviewed
Klip, A (2012-08-21)
Created
May, B (2012-06-08)
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