The PB1 and the ZZ domain of the autophagy receptor p62/SQSTM1 regulate the interaction of p62/SQSTM1 with the autophagosome protein LC3B

Author:

Alcober‐Boquet Lucia1,Zang Tabea1,Pietsch Larissa12,Suess Evelyn1,Hartmann Markus3,Proschak Ewgenij3,Gross Lissy Z. F.4ORCID,Sacerdoti Mariana4ORCID,Zeuzem Stefan1,Rogov Vladimir V.35,Leroux Alejandro E.4ORCID,Piiper Albrecht1,Biondi Ricardo M.124ORCID

Affiliation:

1. Goethe University Frankfurt Medical Clinic 1, Biomedical Research Laboratory, University Hospital Frankfurt Germany

2. German Translational Cancer Network (DKTK) Frankfurt Germany

3. Institut für Pharmazeutische Chemie Goethe‐Universität Frankfurt Frankfurt am Main Germany

4. Instituto de Investigación en Biomedicina de Buenos Aires (IBioBA)—CONICET—Partner Institute of the Max Planck Society Buenos Aires Argentina

5. Structural Genomics Consortium, Buchmann Institute for Molecular Life Sciences Goethe University Frankfurt Germany

Abstract

AbstractAutophagy is a highly conserved cellular process that allows degradation of large macromolecules. p62/SQSTM1 is a key adaptor protein that interacts both with material to be degraded and with LC3 at the autophagosome, enabling degradation of cargos such as protein aggregates, lipid droplets and damaged organelles by selective autophagy. Dysregulation of autophagy contributes to the pathogenesis of many diseases. In this study, we investigated if the interaction of p62/SQSTM1 with LC3B could be regulated. We purified full‐length p62/SQSTM1 and established an in vitro assay that measures the interaction with LC3B. We used the assay to determine the role of the different domains of p62/SQSTM1 in the interaction with LC3B. We identified a mechanism of regulation of p62/SQSTM1 where the ZZ and the PB1 domains regulate the exposure of the LIR‐sequence to enable or inhibit the interaction with LC3B. A mutation to mimic the phosphorylation of a site on the ZZ domain leads to increased interaction with LC3B. Also, a small compound that binds to the ZZ domain enhances interaction with LC3B. Dysregulation of these mechanisms in p62/SQSTM1 could have implications for diseases where autophagy is affected. In conclusion, our study highlights the regulated nature of p62/SQSTM1 and its ability to modulate the interaction with LC3B through a LIR‐sequence Accessibility Mechanism (LAM). Furthermore, our findings suggest the potential for pharmacological modulation of the exposure of LIR, paving the way for future therapeutic strategies.

Funder

Agencia Nacional de Promoción Científica y Tecnológica

Deutschen Konsortium für Translationale Krebsforschung

Publisher

Wiley

Subject

Molecular Biology,Biochemistry

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