Single Chain Antibodies as Tools to Study transforming growth factor-β-Regulated SMAD Proteins in Proximity

Andries Blokzijl1, Agata Zieba2, Michael Hust3

  • 1From the ‡Dept. of Immunology, Genetics and Pathology, Science for Life Laboratory, Uppsala University, Uppsala SE-751 85, Sweden; **YUMAB GmbH, Rebenring 33 Braunschweig 38106, Germany.

Insights

Researchers developed novel assays to monitor TGF-β signaling and identified potential therapeutic targets. These new methods help screen for drugs that reduce specific protein complexes involved in tumor cell processes.

Area of Science:

  • Oncology
  • Molecular Biology
  • Biochemistry

Background:

  • Tumor heterogeneity necessitates combination therapies to overcome treatment resistance.
  • The TGF-β signaling pathway presents potential therapeutic targets for cancer treatment.
  • Existing methods for monitoring TGF-β pathway activity are limited.

Purpose of the Study:

  • To develop novel in situ proximity ligation assays (isPLA) for monitoring TGF-β signaling.
  • To create and validate new affinity reagents, specifically single chain variable fragments (scFvs), targeting SMAD proteins.
  • To identify compounds that modulate the TGF-β pathway by screening for reduced levels of a specific phosphorylated SMAD3 complex.

Main Methods:

  • Phage display was used to generate human scFvs against SMAD2, SMAD3, SMAD4, and SMAD7.
  • A specific scFv targeting phosphorylated SMAD3 (p179 SMAD3) was developed.
  • Recombinant affinity reagents (Yumabs) were created by fusing scFvs to Fc domains for use in isPLA.
  • isPLA was employed to study p179 SMAD3-SMAD4 complex formation and degradation.
  • A chemical screen was performed using isPLA to identify inhibitors of p179 SMAD3 levels.

Main Results:

  • Novel Yumabs targeting SMAD proteins and p179 SMAD3 were successfully developed and validated for isPLA.
  • The p179 SMAD3-SMAD4 complex was observed to form more frequently during cell division.
  • Pharmacological inhibition of CDK4 reduced p179 SMAD3 levels in tumor cells.
  • The p179 SMAD3-SMAD4 complex is targeted for proteasomal degradation.
  • A screen identified two insulin receptor kinase inhibitors that reduced p179 SMAD3-SMAD4 complexes.

Conclusions:

  • The developed recombinant affinity reagents are valuable tools for isPLA.
  • isPLA is a suitable method for monitoring TGF-β signaling and screening for pathway inhibitors.
  • Targeting the p179 SMAD3-SMAD4 complex represents a potential therapeutic strategy in oncology.