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The adaptor protein-1 ?1B subunit expands the repertoire of basolateral sorting signal recognition in epithelial cells.


ABSTRACT: An outstanding question in protein sorting is why polarized epithelial cells express two isoforms of the ?1 subunit of the AP-1 clathrin adaptor complex: the ubiquitous ?1A and the epithelial-specific ?1B. Previous studies led to the notion that ?1A and ?1B mediate basolateral sorting predominantly from the trans-Golgi network (TGN) and recycling endosomes, respectively. Using improved analytical tools, however, we find that ?1A and ?1B largely colocalize with each other. They also colocalize to similar extents with TGN and recycling endosome markers, as well as with basolateral cargoes transiting biosynthetic and endocytic-recycling routes. Instead, the two isoforms differ in their signal-recognition specificity. In particular, ?1B preferentially binds a subset of signals from cargoes that are sorted basolaterally in a ?1B-dependent manner. We conclude that expression of distinct ?1 isoforms in epithelial cells expands the repertoire of signals recognized by AP-1 for sorting of a broader range of cargoes to the basolateral surface.

SUBMITTER: Guo X 

PROVIDER: S-EPMC3992434 | biostudies-literature | 2013 Nov

REPOSITORIES: biostudies-literature

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The adaptor protein-1 μ1B subunit expands the repertoire of basolateral sorting signal recognition in epithelial cells.

Guo Xiaoli X   Mattera Rafael R   Ren Xuefeng X   Chen Yu Y   Retamal Claudio C   González Alfonso A   Bonifacino Juan S JS  

Developmental cell 20131101 3


An outstanding question in protein sorting is why polarized epithelial cells express two isoforms of the μ1 subunit of the AP-1 clathrin adaptor complex: the ubiquitous μ1A and the epithelial-specific μ1B. Previous studies led to the notion that μ1A and μ1B mediate basolateral sorting predominantly from the trans-Golgi network (TGN) and recycling endosomes, respectively. Using improved analytical tools, however, we find that μ1A and μ1B largely colocalize with each other. They also colocalize to  ...[more]

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