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FIP4/Arfophilin‐2 plays overlapping but distinct roles from FIP3/Arfophilin‐1 in neuronal migration during cortical layer formation.

Authors :
Hara, Yoshinobu
Fukaya, Masahiro
Sugawara, Takeyuki
Sakagami, Hiroyuki
Source :
European Journal of Neuroscience; Nov2018, Vol. 48 Issue 9, p3082-3096, 15p, 3 Charts, 5 Graphs
Publication Year :
2018

Abstract

The class II Rab11 family‐interacting proteins, FIP3 and FIP4, also termed Arfophilin‐1 and Arfophilin‐2, respectively, are endosomal proteins that function as dual effector proteins for Rab11 and ADP ribosylation factor (Arf) small GTPases. In the present study, we examined the expression and role of FIP4 in neuronal migration during cerebral layer formation. FIP4mRNA was first weakly detected in post‐mitotic migrating neurons in the upper intermediate zone, and expression was markedly increased in the cortical layer. Exogenously expressed FIP4 protein was localized to subpopulations of EEA1‐ and syntaxin 12‐positive endosomes in migrating neurons, and was partially colocalized with FIP3. Knockdown of FIP4 by in utero electroporation significantly stalled transfected neurons in the lower cortical layer and decreased the speed of neuronal migration in the upper intermediate zone and in the cortical plate compared with control small hairpin RNA (shRNA)‐transfected neurons. Furthermore, co‐transfection of shRNA‐resistant wild‐type FIP4, but not wild type FIP3 or FIP4 mutants lacking the binding region for Rab11 or Arf, significantly improved the disturbed cortical layer formation caused by FIP4 knockdown. Collectively, our findings suggest that FIP4 and FIP3 play overlapping but distinct roles in neuronal migration downstream of Arf and Rab11 during cortical layer formation. Family of Rab11‐interacting protein 4 (FIP4)/Arfophilin‐2 regulates neuronal migration in the upper intermediate zone and cortical plate through Arf‐ and Rab11‐dependent endosomal trafficking during cortical layer formation. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
0953816X
Volume :
48
Issue :
9
Database :
Complementary Index
Journal :
European Journal of Neuroscience
Publication Type :
Academic Journal
Accession number :
132990386
Full Text :
https://doi.org/10.1111/ejn.14199