Identification and Profiling of Environmental Chemicals That Inhibit the TGFβ/SMAD Signaling Pathway

Zhengxi Wei1, Srilatha Sakamuru1, Li Zhang1

  • 1National Center for Advancing Translational Sciences , National Institutes of Health , Bethesda , Maryland 20892 , United States.

Insights

This study screened compounds to find TGFβ/SMAD signaling disruptors using a reporter cell line. Several inhibitors were identified, with some showing developmental toxicity potential in neural stem cells.

Area of Science:

  • Toxicology
  • Molecular Biology
  • Developmental Biology

Background:

  • Transforming growth factor beta (TGFβ) signaling is crucial for development and disease.
  • Disruption of TGFβ pathways can impact embryonic morphogenesis and differentiation.
  • SMAD-dependent and SMAD-independent pathways mediate TGFβ signaling.

Purpose of the Study:

  • To identify potential TGFβ signaling disruptors using a quantitative high-throughput screening (qHTS) assay.
  • To evaluate identified compounds for developmental toxicity.
  • To profile disruptors' effects on other developmental pathways.

Main Methods:

  • Utilized a SMAD Binding Element (SBE)-beta lactamase (bla) HEK 293T reporter cell line for screening.
  • Conducted a qHTS assay on the Tox21 10K compound library.
  • Performed counterscreens on human embryonic neural stem cells and profiled other signaling pathways (WNT, RAR, SHH).

Main Results:

  • Identified kinase inhibitors, organometallic compounds, and dithiocarbamates (DTCs) inhibiting TGFβ1-induced SMAD signaling.
  • Inhibitors were effective independently of cytotoxicity in the reporter assay.
  • Counterscreening revealed cytotoxicity for some SBE antagonists in neural stem cells.

Conclusions:

  • The SBE-bla assay effectively identified TGFβ/SMAD signaling disruptors.
  • Identified compounds warrant further investigation for developmental toxicity.
  • Integrated qHTS approach aids in prioritizing potential developmental toxicants.