Acetylation of N-terminus and two internal amino acids is dispensable for degradation of a protein that aberrantly engages the endoplasmic reticulum translocon

Author:

Engle Sarah M.12,Crowder Justin J.13,Watts Sheldon G.14,Indovina Christopher J.1,Coffey Samuel Z.15,Rubenstein Eric M.1

Affiliation:

1. Department of Biology, Ball State University, Muncie, IN, United States of America

2. Immunology—Translational Science, Eli Lilly and Company, Indianapolis, IN, United States of America

3. Center for Medical Education, Indiana University School of Medicine, Muncie, IN, United States of America

4. Marian University College of Osteopathic Medicine, Indianapolis, IN, United States of America

5. Medpace Reference Laboratories, Cincinnati, OH, United States of America

Abstract

Conserved homologues of the Hrd1 ubiquitin ligase target for degradation proteins that persistently or aberrantly engage the endoplasmic reticulum translocon, including mammalian apolipoprotein B (apoB; the major protein component of low-density lipoproteins) and the artificial yeast protein Deg1-Sec62. A complete understanding of the molecular mechanism by which translocon-associated proteins are recognized and degraded may inform the development of therapeutic strategies for cholesterol-related pathologies. Both apoB and Deg1-Sec62 are extensively post-translationally modified. Mass spectrometry of a variant of Deg1-Sec62 revealed that the protein is acetylated at the N-terminal methionine and two internal lysine residues. N-terminal and internal acetylation regulates the degradation of a variety of unstable proteins. However, preventing N-terminal and internal acetylation had no detectable consequence for Hrd1-mediated proteolysis of Deg1-Sec62. Our data highlight the importance of empirically validating the role of post-translational modifications and sequence motifs on protein degradation, even when such elements have previously been demonstrated sufficient to destine other proteins for destruction.

Funder

National Institutes of Health (NIH)

Ball State University ASPiRE Junior Faculty Research Award

Ball State University Provost’s Office and Department of Biology

Publisher

PeerJ

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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