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Updated: Jun 20, 2026

A Flow Cytometry-Based High-Throughput Technique for Screening Integrin-Inhibitory Drugs
Published on: February 2, 2024
Conformational mAb as a tool for integrin ligand discovery
Ben H Njus1, Alexandre Chigaev, Anna Waller
1Department of Chemistry, University of New Mexico Health Sciences Center, Albuquerque, New Mexico 87131, USA.
Insights
We developed a novel method using an anti-beta(1)-integrin antibody (HUTS-21) to measure the binding affinity of small molecule integrin ligands, aiding in the discovery of new therapeutics.
Area of Science:
- Biochemistry
- Immunology
- Pharmacology
Background:
- alpha(4)beta(1)-Integrin (VLA-4) mediates leukocyte adhesion and extravasation, crucial in inflammatory diseases.
- Small molecules blocking VLA-4-ligand interactions are potential therapeutics.
- Existing methods for ligand binding affinity assessment can be limiting.
Purpose of the Study:
- To establish a novel method for quantifying the binding affinity of small molecule VLA-4 ligands.
- To validate this method using known and novel integrin ligands.
- To explore its potential for high-throughput screening.
Main Methods:
- Utilized a conformationally sensitive antibody (HUTS-21) and a fluorescent ligand (LDV-FITC) in flow cytometry.
- Assessed HUTS-21 epitope exposure induced by small molecule binding.
- Determined EC(50) values for HUTS-21 binding and correlated them with K(i) values from competition assays.
Main Results:
- Small molecule binding to VLA-4 induced HUTS-21 epitope exposure.
- HUTS-21 binding EC(50) values correlated well with K(i) values for tested ligands.
- A docking model suggested a common binding mode for small molecule VLA-4 ligands.
Conclusions:
- HUTS-21 binding serves as a reliable indicator of ligand-binding site occupancy.
- This novel approach enables affinity determination for unlabeled integrin ligands.
- The method is adaptable for high-throughput screening to identify novel integrin ligands.
Abstract:
alpha(4)beta(1)-Integrin (very late antigen-4 (VLA-4)) mediates cell adhesion to cell surface ligands (VCAM-1). Binding of VLA-4 to VCAM-1 initiates rolling and firm adhesion of leukocytes to vascular endothelium followed by the extravasation into the tissue. VLA-4-dependent adhesion plays a key role in controlling leukocyte adhesive events. Small molecules that bind to the integrin ligand-binding site and block its interaction with natural ligands represent promising candidates for treatment of several diseases. Following a flow cytometric screen for small molecule discovery, we took advantage of a conformationally sensitive anti-beta(1)-integrin antibody (HUTS-21) and a small LDV-containing ligand (LDV-FITC) with known affinity to study binding affinities of several known and recently discovered integrin ligands. We found that binding of the LDV-containing small molecule induced exposure of HUTS-21 epitope and that the EC(50) for antibody binding was equal to previously reported K(d) for fluorescent LDV (LDV-FITC). Thus, binding of HUTS-21 can be used to report ligand-binding site occupancy. We studied binding of two known integrin ligands (YLDV and TR14035), as well as of two novel compounds. EC(50) values for HUTS-21 binding showed good correlation with K(i)s determined in the competition assay with LDV-FITC for all ligands. A docking model suggests a common mode of binding for the small molecule VLA-4 ligands. This novel approach described here can be used to determine ligand-binding affinities for unlabeled integrin ligands, and can be adapted to a high-throughput screening format for identification of unknown integrin ligands.
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