scholarly journals ADP-ribosylation Factor 4 Small GTPase Mediates Epidermal Growth Factor Receptor-dependent Phospholipase D2 Activation

2002 ◽  
Vol 278 (4) ◽  
pp. 2661-2668 ◽  
Author(s):  
Sung-Woo Kim ◽  
Masaaki Hayashi ◽  
Jeng-Fan Lo ◽  
Young Yang ◽  
Jin-San Yoo ◽  
...  
2017 ◽  
Vol 40 (4) ◽  
pp. 389-399 ◽  
Author(s):  
Concha López-Ginés ◽  
Lara Navarro ◽  
Lisandra Muñoz-Hidalgo ◽  
Enrique Buso ◽  
José Manuel Morales ◽  
...  

2011 ◽  
Vol 22 (18) ◽  
pp. 3431-3441 ◽  
Author(s):  
Nancy Abou-Zeid ◽  
Rudy Pandjaitan ◽  
Lucie Sengmanivong ◽  
Violaine David ◽  
Gwenaelle Le Pavec ◽  
...  

Small GTPase Rabs are required for membrane protein sorting/delivery to precise membrane domains. Rab13 regulates epithelial tight junction assembly and polarized membrane transport. Here we report that Molecule Interacting with CasL (MICAL)-like1 (MICAL-L1) interacts with GTP-Rab13 and shares a similar domain organization with MICAL. MICAL-L1 has a calponin homology (CH), LIM, proline rich and coiled-coil domains. It is associated with late endosomes. Time-lapse video microscopy shows that green fluorescent protein–Rab7 and mcherry-MICAL-L1 are present within vesicles that move rapidly in the cytoplasm. Depletion of MICAL-L1 by short hairpin RNA does not alter the distribution of a late endosome/lysosome-associated protein but affects the trafficking of epidermal growth factor receptor (EGFR). Overexpression of MICAL-L1 leads to the accumulation of EGFR in the late endosomal compartment. In contrast, knocking down MICAL-L1 results in the distribution of internalized EGFR in vesicles spread throughout the cytoplasm and promotes its degradation. Our data suggest that the N-terminal CH domain associates with the C-terminal Rab13 binding domain (RBD) of MICAL-L1. The binding of Rab13 to RBD disrupts the CH/RBD interaction, and may induce a conformational change in MICAL-L1, promoting its activation. Our results provide novel insights into the MICAL-L1/Rab protein complex that can regulate EGFR trafficking at late endocytic pathways.


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