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The cell fate determinant numb interacts with EHD/Rme-1 family proteins and has a role in endocytic recycling.


ABSTRACT: The adaptor protein Numb is necessary for the cell fate specification of progenitor cells in the Drosophila nervous system. Numb is evolutionarily conserved and previous studies have provided evidence for a similar functional role during mammalian development. The Numb protein has multiple protein-protein interaction regions including a phosphotyrosine binding (PTB) domain and a carboxy-terminal domain that contains conserved interaction motifs including an EH (Eps15 Homology) domain binding motif and alpha-adaptin binding site. In this study we identify the EHD/Rme-1/Pincher family of endocytic proteins as Numb interacting partners in mammals and Drosophila. The EHD/Rme-1 proteins function in recycling of plasma membrane receptors internalized by both clathrin-mediated endocytosis and a clathrin-independent pathway regulated by ADP ribosylation factor 6 (Arf6). Here we report that Numb colocalizes with endogenous EHD4/Pincher and Arf6 and that Arf6 mutants alter Numb subcellular localization. In addition, we present evidence that Numb has a novel function in endosomal recycling and intracellular trafficking of receptors.

SUBMITTER: Smith CA 

PROVIDER: S-EPMC491829 | biostudies-literature | 2004 Aug

REPOSITORIES: biostudies-literature

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The cell fate determinant numb interacts with EHD/Rme-1 family proteins and has a role in endocytic recycling.

Smith Christian A CA   Dho Sascha E SE   Donaldson Julie J   Tepass Ulrich U   McGlade C Jane CJ  

Molecular biology of the cell 20040521 8


The adaptor protein Numb is necessary for the cell fate specification of progenitor cells in the Drosophila nervous system. Numb is evolutionarily conserved and previous studies have provided evidence for a similar functional role during mammalian development. The Numb protein has multiple protein-protein interaction regions including a phosphotyrosine binding (PTB) domain and a carboxy-terminal domain that contains conserved interaction motifs including an EH (Eps15 Homology) domain binding mot  ...[more]

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