Single-Cell Identity Generated by Combinatorial Homophilic Interactions between alpha, beta, and gamma Protocadherins

Thu, CA; Chen, WV; Rubinstein, R; Chevee, M; Wolcott, HN; Felsovalyi, KO; Tapia, JC; Shapiro, L; Honig, B; Maniatis T.

Abstract

Individual mammalian neurons stochastically express distinct repertoires of alpha, beta, and gamma protocadherin (Pcdh) proteins, which function in neural circuit assembly. We report that all three subfamilies of clustered Pcdhs can engage in specific homophilic interactions, that cell surface delivery of Pcdh alpha isoforms requires cis interactions with other Pcdhs, and that the extracellular cadherin domain EC6 plays a critical role in this process. Examination of homophilic interactions between specific combinations of multiple Pcdh isoforms revealed that Pcdh combinatorial recognition specificities depend on the identity of all of the expressed isoforms. A single mismatched Pcdh isoform can interfere with these combinatorial homophilic interactions. A theoretical analysis reveals that assembly of Pcdh isoforms into multimeric recognition units and the observed tolerance for mismatched isoforms can generate cell surface diversity sufficient for single-cell identity. However, the competing demands of nonself discrimination and self-recognition place limitations on the mechanisms by which homophilic recognition units can function.

Más información

Título según WOS: Single-Cell Identity Generated by Combinatorial Homophilic Interactions between alpha, beta, and gamma Protocadherins
Título de la Revista: CELL
Volumen: 158
Número: 5
Editorial: Cell Press
Fecha de publicación: 2014
Página de inicio: 1045
Página final: 1059
Idioma: English
DOI:

10.1016/j.cell.2014.07.012

Notas: ISI