Coupled protein quality control during nonsense-mediated mRNA decay

Author:

Inglis Alison J.1,Guna Alina12,Gálvez-Merchán Ángel1,Pal Akshaye1,Esantsi Theodore K.23,Keys Heather R.2,Frenkel Evgeni M.2,Oania Robert1,Weissman Jonathan S.2345,Voorhees Rebecca M.1ORCID

Affiliation:

1. California Institute of Technology 1 Division of Biology and Biological Engineering , , 1200 E. California Blvd, Pasadena, CA 91125 , USA

2. Whitehead Institute for Biomedical Research, Massachusetts Institute of Technology 2 , Cambridge, MA 02142 , USA

3. Howard Hughes Medical Institute, Massachusetts Institute of Technology 3 , Cambridge, MA 02142 , USA

4. Massachusetts Institute of Technology 4 Department of Biology , , Cambridge, MA 02142 , USA

5. David H. Koch Institute for Integrative Cancer Research, Massachusetts Institute Technology 5 , Cambridge, MA 02142 , USA

Abstract

ABSTRACT Translation of mRNAs containing premature termination codons (PTCs) results in truncated protein products with deleterious effects. Nonsense-mediated decay (NMD) is a surveillance pathway responsible for detecting PTC containing transcripts. Although the molecular mechanisms governing mRNA degradation have been extensively studied, the fate of the nascent protein product remains largely uncharacterized. Here, we use a fluorescent reporter system in mammalian cells to reveal a selective degradation pathway specifically targeting the protein product of an NMD mRNA. We show that this process is post-translational and dependent on the ubiquitin proteasome system. To systematically uncover factors involved in NMD-linked protein quality control, we conducted genome-wide flow cytometry-based screens. Our screens recovered known NMD factors but suggested that protein degradation did not depend on the canonical ribosome-quality control (RQC) pathway. A subsequent arrayed screen demonstrated that protein and mRNA branches of NMD rely on a shared recognition event. Our results establish the existence of a targeted pathway for nascent protein degradation from PTC containing mRNAs, and provide a reference for the field to identify and characterize required factors.

Funder

Heritage Medical Research Institute

Kinship Foundation

Pew-Stewart Foundation

California Institute of Technology

Caltech

Larry L. Hillblom Foundation

Human Frontier Science Program

Howard Hughes Medical Institute

Publisher

The Company of Biologists

Subject

Cell Biology

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