CRK and NCK adaptors may functionally overlap in zebrafish neurodevelopment, as indicated by common binding partners and overlapping expression patterns

Author:

Stergas Helaina R.1,Dillon‐Martin Maeve1,Dumas Caroline M.1,Hansen Nicole A.1,Carasi‐Schwartz Francesca J.1,D'Amico Alex R.1,Finnegan Kylie M.1,Juch Uatchet1,Kane Keeley R.1,Kaplan Isabel E.1,Masengarb Madeline L.1,Melero Marina E.1,Meyer Lauren E.1,Sacher Conrad R.1,Scriven Evan A.1,Ebert Alicia M.1ORCID,Ballif Bryan A.1ORCID

Affiliation:

1. Department of Biology University of Vermont Burlington VT USA

Abstract

CRK adaptor proteins are important for signal transduction mechanisms driving cell proliferation and positioning during vertebrate central nervous system development. Zebrafish lacking both CRK family members exhibit small, disorganized retinas with 50% penetrance. The goal of this study was to determine whether another adaptor protein might functionally compensate for the loss of CRK adaptors. Expression patterns in developing zebrafish, and bioinformatic analyses of the motifs recognized by their SH2 and SH3 domains, suggest NCK adaptors are well‐positioned to compensate for loss of CRK adaptors. In support of this hypothesis, proteomic analyses found CRK and NCK adaptors share overlapping interacting partners including known regulators of cell adhesion and migration, suggesting their functional intersection in neurodevelopment.

Funder

Division of Integrative Organismal Systems

National Institute of General Medical Sciences

University of Vermont

Publisher

Wiley

Subject

Cell Biology,Genetics,Molecular Biology,Biochemistry,Structural Biology,Biophysics

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