Rab11fip5 regulates telencephalon development via ephrinB1 recycling

Author:

Yoon Jaeho1ORCID,Garo Jerlin1ORCID,Lee Moonsup1,Sun Jian1,Hwang Yoo-Seok1,Daar Ira O.1ORCID

Affiliation:

1. Cancer and Developmental Biology Laboratory (CDBL), Center for Cancer Research (CCR) – Frederick, National Cancer Institute, Frederick, MD 21702, USA

Abstract

ABSTRACT Rab11 family-interacting protein 5 (Rab11fip5) is an adaptor protein that binds to the small GTPase Rab11, which has an important function in endosome recycling and trafficking of cellular proteins to the plasma membrane. Rab11fip5 is involved in many cellular processes, such as cytoskeleton rearrangement, iron uptake and exocytosis in neuroendocrine cells, and is also known as a candidate gene for autism-spectrum disorder. However, the role of Rab11fip5 during early embryonic development is not clearly understood. In this study, we identified Rab11fip5 as a protein that interacts with ephrinB1, a transmembrane ligand for Eph receptors. The PDZ binding motif in ephrinB1 and the Rab-binding domain in Rab11fip5 are necessary for their interaction in a complex. EphrinB1 and Rab11fip5 display overlapping expression in the telencephalon of developing amphibian embryos. The loss of Rab11fip5 function causes a reduction in telencephalon size and a decrease in the expression level of ephrinB1. Moreover, morpholino oligonucleotide-mediated knockdown of Rab11fip5 decreases cell proliferation in the telencephalon. The overexpression of ephrinB1 rescues these defects, suggesting that ephrinB1 recycling by the Rab11/Rab11fip5 complex is crucial for proper telencephalon development.

Funder

National Cancer Institute

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

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