Approaches to Investigating the Protein Interactome of PTEN.

J Proteome Res

School of Life and Health Sciences, Aston Triangle, Aston University, B4 7ET, Birmingham, U.K.

Published: January 2021

AI Article Synopsis

  • PTEN is a crucial tumor suppressor that regulates the PI3K-AKT signaling pathway, impacting cell survival and metabolism, and is often mutated in cancer and associated with diseases like diabetes.
  • The review explores the interactions of PTEN with various proteins, highlighting its roles beyond just signaling regulation and emphasizing its importance in cell biology.
  • It compares different research methods used to study PTEN's interactome, from hypothesis-driven techniques like co-immunoprecipitation to exploratory high-data approaches, ultimately showcasing the diverse cellular functions of PTEN revealed by recent studies.

Article Abstract

The tumor suppressor phosphatase and tensin homologue (PTEN) is a redox-sensitive dual specificity phosphatase with an essential role in the negative regulation of the PI3K-AKT signaling pathway, affecting metabolic and cell survival processes. PTEN is commonly mutated in cancer, and dysregulation in the metabolism of PIP is implicated in other diseases such as diabetes. PTEN interactors are responsible for some functional roles of PTEN beyond the negative regulation of the PI3K pathway and are thus of great importance in cell biology. Both high-data content proteomics-based approaches and low-data content PPI approaches have been used to investigate the interactome of PTEN and elucidate further functions of PTEN. While low-data content approaches rely on co-immunoprecipitation and Western blotting, and as such require previously generated hypotheses, high-data content approaches such as affinity pull-down proteomic assays or the yeast 2-hybrid system are hypothesis generating. This review provides an overview of the PTEN interactome, including redox effects, and critically appraises the methods and results of high-data content investigations into the global interactome of PTEN. The biological significance of findings from recent studies is discussed and illustrates the breadth of cellular functions of PTEN that can be discovered by these approaches.

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Source
http://dx.doi.org/10.1021/acs.jproteome.0c00570DOI Listing

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