Discovery of RGS2-FBXO44 interaction inhibitors using a cell-based NanoBit assay

Sadikshya Aryal1, Cindy Shi Yee Wong2, Harrison J McNabb1

  • 1Borch Department of Medicinal Chemistry and Molecular Pharmacology, Purdue University, West Lafayette, Indiana.

PubMed

Insights

Researchers identified a novel compound that inhibits the interaction between RGS2 and FBXO44, leading to increased RGS2 protein levels. This discovery offers a new therapeutic strategy for diseases linked to low RGS2, such as hypertension.

Area of Science:

  • Biochemistry
  • Molecular Biology
  • Pharmacology

Background:

  • Regulators of G protein signaling (RGS) proteins are crucial in cellular signaling and their dysfunction is implicated in various diseases.
  • Therapeutic targeting of RGS proteins is difficult due to their lack of druggable pockets and enzymatic activity.
  • Stabilizing RGS2 protein levels presents a promising therapeutic avenue for conditions like hypertension, heart failure, and asthma.

Purpose of the Study:

  • To develop a strategy for identifying small molecules that inhibit RGS2 protein degradation.
  • To discover inhibitors of the RGS2-FBXO44 interaction, a key E3 ligase complex involved in RGS2 degradation.
  • To validate a novel compound as a tool for increasing RGS2 protein levels.

Main Methods:

  • Development of a NanoLuc Binary Technology (NanoBiT) assay to detect RGS2-FBXO44 interactions.
  • Screening of 1600 compounds from a protein-protein interaction fragment library.
  • Utilizing siRNA-mediated knockdown to confirm the mechanism of action.

Main Results:

  • A novel compound, designated compound 10, was identified that inhibits the RGS2-FBXO44 interaction with a potency of 19.6 microM.
  • Compound 10 directly binds to RGS2, stabilizing it and increasing its protein levels.
  • The observed increase in RGS2 levels was dependent on FBXO44, as its knockdown attenuated the compound's effect.

Conclusions:

  • Compound 10 is the first small-molecule inhibitor identified for the RGS2-FBXO44 interaction.
  • This study demonstrates proof of concept for using RGS2-FBXO44 interaction inhibitors to increase RGS2 protein levels.
  • Developing compounds with this mechanism holds potential for treating RGS2-associated pathologies like hypertension, heart failure, and asthma.