Transcriptionally inducible Pleckstrin homology-like domain, family A, member 1, attenuates ErbB receptor activity by inhibiting receptor oligomerization

J Biol Chem. 2018 Feb 9;293(6):2206-2218. doi: 10.1074/jbc.M117.778399. Epub 2017 Dec 12.

Abstract

Feedback control is a key mechanism in signal transduction, intimately involved in regulating the outcome of the cellular response. Here, we report a novel mechanism by which PHLDA1, Pleckstrin homology-like domain, family A, member 1, negatively regulates ErbB receptor signaling by inhibition of receptor oligomerization. We have found that the ErbB3 ligand, heregulin, induces PHILDA1 expression in MCF-7 cells. Transcriptionally-induced PHLDA1 protein directly binds to ErbB3, whereas knockdown of PHLDA1 increases complex formation between ErbB3 and ErbB2. To provide insight into the mechanism for our time-course and single-cell experimental observations, we performed a systematic computational search of network topologies of the mathematical models based on receptor dimer-tetramer formation in the ErbB activation processes. Our results indicate that only a model in which PHLDA1 inhibits formation of both dimers and tetramer can explain the experimental data. Predictions made from this model were further validated by single-molecule imaging experiments. Our studies suggest a unique regulatory feature of PHLDA1 to inhibit the ErbB receptor oligomerization process and thereby control the activity of receptor signaling network.

Keywords: breast cancer; mathematical modeling; oligomerization; receptor tyrosine kinase; signal transduction.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Humans
  • MCF-7 Cells
  • Models, Chemical
  • Neuregulin-1 / metabolism
  • Protein Multimerization
  • Receptor, ErbB-3 / metabolism*
  • Signal Transduction
  • Single Molecule Imaging
  • Single-Cell Analysis
  • Transcription Factors / metabolism*
  • Transcription Factors / physiology
  • Transcription, Genetic

Substances

  • Neuregulin-1
  • PHLDA1 protein, human
  • Transcription Factors
  • Receptor, ErbB-3