4.7 Article

Colloidal Aggregation Causes Inhibition of G Protein-Coupled Receptors

期刊

JOURNAL OF MEDICINAL CHEMISTRY
卷 56, 期 6, 页码 2406-2414

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AMER CHEMICAL SOC
DOI: 10.1021/jm301749y

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  1. NIH [GM71630]
  2. Michael Hooker Chair of Protein Therapeutics and Translational Proteomics, the NIMH Psychoactive Drug Screening Program [U19MH82441]

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Colloidal aggregation is the dominant mechanism for artifactual inhibition of soluble proteins, and controls against it are now widely deployed. Conversely, investigating this mechanism for membrane-bound receptors has proven difficult. Here we investigate the activity of four well-characterized aggregators against three G protein-coupled receptors (GPCRs) recognizing peptide and protein ligands. Each of the aggregators was active at micromolar concentrations against the three GPCRs in cell-based assays. This activity could be attenuated by either centrifugation of the inhibitor stock solution or by addition of Tween-80 detergent. In the absence of agonist, the aggregators acted as inverse agonists, consistent with a direct receptor interaction. Meanwhile, several literature GPCR ligands that resemble aggregators themselves formed colloids, by both physical and enzymological tests. These observations suggest that some GPCRs may be artifactually antagonized by colloidal aggregates, an effect that merits the attention of investigators in this field.

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