EFA6A, an Exchange Factor for Arf6, Regulates NGF‐Dependent TrkA Recycling From Early Endosomes and Neurite Outgrowth in PC12 Cells

Author:

Fukaya Masahiro1ORCID,Ibuchi Kanta1,Sugawara Takeyuki1,Itakura Makoto2,Ito Akiko3,Shiroshima Tomoko1,Hara Yoshinobu1,Okamoto Hirotsugu3,Luton Frédéric4,Sakagami Hiroyuki1

Affiliation:

1. Department of Anatomy Kitasato University School of Medicine Sagamihara Japan

2. Department of Biochemistry Kitasato University School of Medicine Sagamihara Japan

3. Department of Anesthesiology Kitasato University School of Medicine Sagamihara Japan

4. CNRS, Institut de Pharmacologie Moléculaire et Cellulaire (IPMC), Université Côte d'Azur Valbonne France

Abstract

ABSTRACTEndosomal trafficking of TrkA is a critical process for nerve growth factor (NGF)‐dependent neuronal cell survival and differentiation. The small GTPase ADP‐ribosylation factor 6 (Arf6) is implicated in NGF‐dependent processes in PC12 cells through endosomal trafficking and actin cytoskeleton reorganization. However, the regulatory mechanism for Arf6 in NGF signaling is largely unknown. In this study, we demonstrated that EFA6A, an Arf6‐specific guanine nucleotide exchange factor, was abundantly expressed in PC12 cells and that knockdown of EFA6A significantly inhibited NGF‐dependent Arf6 activation, TrkA recycling from early endosomes to the cell surface, prolonged ERK1/2 phosphorylation, and neurite outgrowth. We also demonstrated that EFA6A forms a protein complex with TrkA through its N‐terminal region, thereby enhancing its catalytic activity for Arf6. Similarly, we demonstrated that EFA6A forms a protein complex with TrkA in cultured dorsal root ganglion (DRG) neurons. Furthermore, cultured DRG neurons from EFA6A knockout mice exhibited disturbed NGF‐dependent TrkA trafficking compared with wild‐type neurons. These findings provide the first evidence for EFA6A as a key regulator of NGF‐dependent TrkA trafficking and signaling.

Funder

Nakatomi Foundation

Japan Society for the Promotion of Science

Publisher

Wiley

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