Spatiotemporally-resolved mapping of RNA binding proteins via functional proximity labeling reveals a mitochondrial mRNA anchor promoting stress recovery.

Nat Commun
Authors
Keywords
Abstract

Proximity labeling (PL) with genetically-targeted promiscuous enzymes has emerged as a powerful tool for unbiased proteome discovery. By combining the spatiotemporal specificity of PL with methods for functional protein enrichment, we show that it is possible to map specific protein subclasses within distinct compartments of living cells. In particular, we develop a method to enrich subcompartment-specific RNA binding proteins (RBPs) by combining peroxidase-catalyzed PL with organic-aqueous phase separation of crosslinked protein-RNA complexes ("APEX-PS"). We use APEX-PS to generate datasets of nuclear, nucleolar, and outer mitochondrial membrane (OMM) RBPs, which can be mined for novel functions. For example, we find that the OMM RBP SYNJ2BP retains specific nuclear-encoded mitochondrial mRNAs at the OMM during translation stress, facilitating their local translation and import of protein products into the mitochondrion during stress recovery. Functional PL in general, and APEX-PS in particular, represent versatile approaches for the discovery of proteins with novel function in specific subcellular compartments.

Year of Publication
2021
Journal
Nat Commun
Volume
12
Issue
1
Pages
4980
Date Published
2021 08 17
ISSN
2041-1723
DOI
10.1038/s41467-021-25259-2
PubMed ID
34404792
PubMed Central ID
PMC8370977
Links
Grant list
R01 DK121409 / DK / NIDDK NIH HHS / United States
U01 CA214125 / CA / NCI NIH HHS / United States
U24 CA210986 / CA / NCI NIH HHS / United States