Inhibition of Pax2 Transcription Activation with a Small Molecule that Targets the DNA Binding Domain
Edward Grimley1,2, Chenzhong Liao1, Egon J Ranghini1
1Department of Pathology, University of Michigan , Ann Arbor, Michigan 48109, United States.
Abstract:
The Pax gene family encodes DNA binding transcription factors that control critical steps in embryonic development and differentiation of specific cell lineages. Often, Pax proteins are re-expressed or ectopically expressed in cancer and other diseases of abnormal proliferation, making them attractive targets for tissue specific inhibition by small molecules. In this report, we used a homology model of the Pax2 paired domain and a virtual screen to identify small molecules that can inhibit binding of the paired domain to DNA and Pax2 mediated transcription activation. Candidates from the virtual screen were then confirmed in a cell based Pax2 transactivation assay. Subsequently, we tested analogs of these hits to identify a single compound that effectively blocked Pax2 activity and DNA binding with a Kd of 1.35-1.5 μM. The compound, termed EG1, was used to inhibit embryonic kidney development, a process directly dependent on Pax2 activity. Furthermore, we show that EG1 can inhibit proliferation of Pax2 positive renal and ovarian cancer cell lines but has little effect on Pax2 negative cancer cells. These data confirm that small molecules targeting the DNA binding paired domain can be identified and may be good lead compounds for developing tissue and cell-type specific anticancer therapies.
Insights
Researchers identified a small molecule, EG1, that inhibits Pax2 protein activity. This discovery offers potential for developing targeted therapies against Pax2-driven cancers, including kidney and ovarian cancers.
Area of Science:
- Molecular Biology
- Developmental Biology
- Medicinal Chemistry
Background:
- Pax proteins are transcription factors crucial for embryonic development.
- Aberrant Pax protein expression is linked to cancer, presenting therapeutic targets.
Purpose of the Study:
- To identify small molecules inhibiting Pax2 DNA binding and transcriptional activity.
- To develop targeted therapies for Pax2-positive cancers.
Main Methods:
- Homology modeling and virtual screening of Pax2 paired domain.
- Cell-based transactivation assays and analog testing.
- Inhibition assays for DNA binding and cancer cell proliferation.
Main Results:
- A novel inhibitor, EG1, was identified with high affinity (Kd 1.35-1.5 μM) for the Pax2 paired domain.
- EG1 effectively blocked Pax2 activity in vitro and in embryonic kidney development.
- EG1 inhibited proliferation of Pax2-positive renal and ovarian cancer cells.
Conclusions:
- Small molecules targeting the Pax2 paired domain can be developed as effective inhibitors.
- EG1 demonstrates potential as a lead compound for tissue-specific anticancer therapies.
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