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Updated: May 25, 2026

Assessing Cellular Target Engagement by SHP2 (PTPN11) Phosphatase Inhibitors
Published on: July 17, 2020
Mouse model for probing tumor suppressor activity of protein phosphatase 2A in diverse signaling pathways
1Department of Pathology, University of California, San Diego, La Jolla, CA, USA. gwalter@ucsd.edu
Abstract:
Evidence that protein phosphatase 2A (PP2A) is a tumor suppressor in humans came from the discovery of mutations in the genes encoding the Aα and Aβ subunits of the PP2A trimeric holoenzymes, Aα-B-C and Aβ-B-C. One point mutation, Aα-E64D, was found in a human lung carcinoma. It renders Aα specifically defective in binding regulatory B' subunits. Recently, we reported a knock-in mouse expressing Aα-E64D and an Aα knockout mouse. The mutant mice showed a 50-60% increase in the incidence of lung cancer induced by benzopyrene. Importantly, PP2A's tumor suppressor activity depended on p53. These data provide the first direct evidence that PP2A is a tumor suppressor in mice. In addition, they suggest that PP2A is a tumor suppressor in humans. Here, we report that PP2A functions as a tumor suppressor in mice that develop lung cancer triggered by oncogenic K-ras. We discuss whether PP2A may function as a tumor suppressor in diverse tissues, with emphasis on endometrial and ovarian carcinomas, in which Aα mutations were detected at a high frequency. We propose suitable mouse models for examining whether PP2A functions as tumor suppressor in major growth-stimulatory signaling pathways, and we discuss the prospect of using the PP2A activator FTY720 as a drug against malignancies that are driven by these pathways.
Insights
Protein phosphatase 2A (PP2A) acts as a tumor suppressor in mice, with mutations increasing lung cancer risk. This supports PP2A
Area of Science:
- Molecular Biology
- Oncology
- Genetics
Background:
- Mutations in protein phosphatase 2A (PP2A) subunit genes suggest its role as a tumor suppressor in humans.
- A specific mutation, Aα-E64D, impairs PP2A's binding to regulatory B' subunits.
Purpose of the Study:
- To investigate the tumor suppressor function of PP2A in mouse models.
- To determine if PP2A's tumor suppressor activity is dependent on p53.
- To explore PP2A's role in K-ras-driven lung cancer and other carcinomas.
Main Methods:
- Generated knock-in mice expressing the Aα-E64D mutation and Aα knockout mice.
- Induced lung cancer using benzopyrene and oncogenic K-ras.
- Assessed cancer incidence and p53 dependence.
Main Results:
- Mutant mice showed a 50-60% increase in benzopyrene-induced lung cancer.
- PP2A's tumor suppressor activity was found to be p53-dependent.
- PP2A functions as a tumor suppressor in K-ras-driven lung cancer models.
Conclusions:
- Provides direct evidence for PP2A's tumor suppressor function in mice.
- Suggests PP2A is a tumor suppressor in human cancers, including endometrial and ovarian carcinomas.
- Proposes mouse models and therapeutic strategies targeting PP2A for cancer treatment.
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