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Published on: March 10, 2017
High-Throughput Screening Assays for Cancer Immunotherapy Targets: Ectonucleotidases CD39 and CD73
Meera Kumar1, Robert Lowery1, Vaishnav Kumar2
1BellBrook Labs, R&D, Madison, WI, USA.
Abstract:
Production of adenosine in the extracellular tumor microenvironment elicits strong immunosuppression and is associated with tumor progression. Thus, targeting adenosine-generating ectonucleotidases is a potential strategy to stimulate and prolong antitumor immunity. Because the reaction products of ectonucleotidases differ by a single phosphate group, selective detection in an assay format that is compatible with high-throughput screening (HTS) has been elusive. We report the development of biochemical assays capable of measuring the activity of ectonucleoside triphosphate diphosphohydrolase-1 (ENTPD1; also known as CD39) and ecto-5'-nucleotidase (CD73). Both assays leverage the Transcreener HTS Assay platform, which facilitates selective immunodetection of nucleotides with homogenous fluorescent readouts, fluorescence polarization or time-resolved fluorescence energy transfer. The Transcreener AMP2 Assay was used to measure CD39 activity, allowing detection of adenosine monophosphate (AMP) production (Z' > 0.6) with subnanomolar amounts of CD39, allowing IC50 determination for tool compounds, consistent with previously reported values. To detect the production of adenosine by CD73, the Transcreener ADP2 Assay was coupled with adenosine kinase (AK); conversion of adenosine to AMP and adenosine diphosphate (ADP) by AK allows detection with ADP2 antibody. The Transcreener AMP2 Assay was used to screen a 1280 Library of Pharmacologically Active Compounds (LOPAC) library and a 1600-compound subset of a ChemBridge diversity library for CD39 inhibitors, allowing the identification of nine and eight candidate compounds from each library, respectively. The Transcreener ADP2 Assay was used to screen 1600 compounds from the ChemBridge diversity library for CD73 inhibitors and identified 14 potential candidates. HTS-compatible assays for ectonucleotidase activity may allow identification of purinergic signaling pathway inhibitors important for tumor-specific immune responses during tumor pathogenesis.
Insights
Researchers developed new biochemical assays to measure ectonucleotidase activity, crucial for targeting tumor immunosuppression. These high-throughput screening assays successfully identified potential inhibitors for CD39 and CD73, offering new strategies to boost antitumor immunity.
Area of Science:
- Biochemistry
- Immunology
- Pharmacology
Background:
- Extracellular adenosine in tumors causes immunosuppression and promotes progression.
- Targeting adenosine-generating ectonucleotidases is a promising strategy to enhance antitumor immunity.
- Selective detection of ectonucleotidase activity for high-throughput screening (HTS) has been challenging due to similar reaction products.
Purpose of the Study:
- To develop HTS-compatible biochemical assays for measuring the activity of ectonucleoside triphosphate diphosphohydrolase-1 (ENTPD1; CD39) and ecto-5'-nucleotidase (CD73).
- To utilize these assays to identify novel inhibitors of CD39 and CD73, key enzymes in purinergic signaling within the tumor microenvironment.
Main Methods:
- Development of assays using the Transcreener HTS Assay platform for selective immunodetection of nucleotides.
- Utilized Transcreener AMP2 Assay for CD39 activity measurement and IC50 determination.
- Coupled Transcreener ADP2 Assay with adenosine kinase (AK) to detect CD73 activity by measuring adenosine production.
Main Results:
- The developed assays demonstrated reliable measurement of CD39 and CD73 activity with high sensitivity.
- Screening of compound libraries identified nine and eight candidate CD39 inhibitors from the LOPAC and ChemBridge libraries, respectively.
- Screening of the ChemBridge library identified 14 potential CD73 inhibitors.
Conclusions:
- HTS-compatible assays for ectonucleotidase activity have been successfully developed.
- These assays facilitate the identification of inhibitors targeting the purinergic signaling pathway.
- The identified inhibitors hold potential for stimulating antitumor immunity and treating cancer.

