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Visualization and Quantification of TGFβ/BMP/SMAD Signaling under Different Fluid Shear Stress Conditions using Proximity-Ligation-Assay
Published on: September 14, 2021
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.
Abstract:
The cellular heterogeneity seen in tumors, with subpopulations of cells capable of resisting different treatments, renders single-treatment regimens generally ineffective. Accordingly, there is a great need to increase the repertoire of drug treatments from which combinations may be selected to efficiently target sets of pathological processes, while suppressing the emergence of resistance mutations. In this regard, members of the TGF-β signaling pathway may furnish new, valuable therapeutic targets. In the present work, we developed in situ proximity ligation assays (isPLA) to monitor the state of the TGF-β signaling pathway. Moreover, we extended the range of suitable affinity reagents for this analysis by developing a set of in-vitro-derived human antibody fragments (single chain fragment variable, scFv) that bind SMAD2 (Mothers against decapentaplegic 2), 3, 4, and 7 using phage display. These four proteins are all intracellular mediators of TGF-β signaling. We also developed an scFv specific for SMAD3 phosphorylated in the linker domain 3 (p179 SMAD3). This phosphorylation has been shown to inactivate the tumor suppressor function of SMAD3. The single chain affinity reagents developed in the study were fused tocrystallizable antibody fragments (Fc-portions) and expressed as dimeric IgG-like molecules having Fc domains (Yumabs), and we show that they represent valuable reagents for isPLA.Using these novel assays, we demonstrate that p179 SMAD3 forms a complex with SMAD4 at increased frequency during division and that pharmacological inhibition of cyclin-dependent kinase 4 (CDK4)(1) reduces the levels of p179SMAD3 in tumor cells. We further show that the p179SMAD3-SMAD4 complex is bound for degradation by the proteasome. Finally, we developed a chemical screening strategy for compounds that reduce the levels of p179SMAD3 in tumor cells with isPLA as a read-out, using the p179SMAD3 scFv SH544-IIC4. The screen identified two kinase inhibitors, known inhibitors of the insulin receptor, which decreased levels of p179SMAD3/SMAD4 complexes, thereby demonstrating the suitability of the recombinant affinity reagents applied in isPLA in screening for inhibitors of cell signaling.
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.
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