Coupling to short linear motifs creates versatile PME-1 activities in PP2A holoenzyme demethylation and inhibition

Author:

Li Yitong1ORCID,Balakrishnan Vijaya Kumar1,Rowse Michael1ORCID,Wu Cheng-Guo12,Bravos Anastasia Phoebe1,Yadav Vikash K3,Ivarsson Ylva3,Strack Stefan4,Novikova Irina V5,Xing Yongna12ORCID

Affiliation:

1. McArdle Laboratory for Cancer Research, Department of Oncology, University of Wisconsin at Madison, School of Medicine and Public Health

2. Biophysics program, University of Wisconsin at Madison

3. Department of Chemistry – BMC, Uppsala University

4. Department of Neuroscience and Pharmacology, University of Iowa

5. Environmental Molecular Sciences Laboratory, Pacific Northwest National Laboratory

Abstract

Protein phosphatase 2A (PP2A) holoenzymes target broad substrates by recognizing short motifs via regulatory subunits. PP2A methylesterase 1 (PME-1) is a cancer-promoting enzyme and undergoes methylesterase activation upon binding to the PP2A core enzyme. Here, we showed that PME-1 readily demethylates different families of PP2A holoenzymes and blocks substrate recognition in vitro. The high-resolution cryoelectron microscopy structure of a PP2A-B56 holoenzyme–PME-1 complex reveals that PME-1 disordered regions, including a substrate-mimicking motif, tether to the B56 regulatory subunit at remote sites. They occupy the holoenzyme substrate-binding groove and allow large structural shifts in both holoenzyme and PME-1 to enable multipartite contacts at structured cores to activate the methylesterase. B56 interface mutations selectively block PME-1 activity toward PP2A-B56 holoenzymes and affect the methylation of a fraction of total cellular PP2A. The B56 interface mutations allow us to uncover B56-specific PME-1 functions in p53 signaling. Our studies reveal multiple mechanisms of PME-1 in suppressing holoenzyme functions and versatile PME-1 activities derived from coupling substrate-mimicking motifs to dynamic structured cores.

Funder

National Institute of General Medical Sciences

American Cancer Society

Jordan's Guardian Angels Foundation and Jordan's Syndrome research consortium fund from the State of California

Publisher

eLife Sciences Publications, Ltd

Subject

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

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