In vivo proteomic mapping through GFP-directed proximity-dependent biotin labelling in zebrafish

Author:

Xiong Zherui1ORCID,Lo Harriet P1,McMahon Kerrie-Ann1,Martel Nick1,Jones Alun1,Hill Michelle M2ORCID,Parton Robert G13ORCID,Hall Thomas E1ORCID

Affiliation:

1. Institute for Molecular Bioscience, The University of Queensland, Brisbane, Australia

2. QIMR Berghofer Medical Research Institute, Herston, Australia

3. Centre for Microscopy and Microanalysis, The University of Queensland, Brisbane, Australia

Abstract

Protein interaction networks are crucial for complex cellular processes. However, the elucidation of protein interactions occurring within highly specialised cells and tissues is challenging. Here, we describe the development, and application, of a new method for proximity-dependent biotin labelling in whole zebrafish. Using a conditionally stabilised GFP-binding nanobody to target a biotin ligase to GFP-labelled proteins of interest, we show tissue-specific proteomic profiling using existing GFP-tagged transgenic zebrafish lines. We demonstrate the applicability of this approach, termed BLITZ (Biotin Labelling In Tagged Zebrafish), in diverse cell types such as neurons and vascular endothelial cells. We applied this methodology to identify interactors of caveolar coat protein, cavins, in skeletal muscle. Using this system, we defined specific interaction networks within in vivo muscle cells for the closely related but functionally distinct Cavin4 and Cavin1 proteins.

Funder

National Health and Medical Research Council

Australian Research Council

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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