Chemoselective small molecules that covalently modify one lysine in a non-enzyme protein in plasma
- PMID: 20081815
- PMCID: PMC3107129
- DOI: 10.1038/nchembio.281
Chemoselective small molecules that covalently modify one lysine in a non-enzyme protein in plasma
Abstract
A small molecule that could bind selectively to and then react chemoselectively with a non-enzyme protein in a complex biological fluid, such as blood, could have numerous practical applications. Herein, we report a family of designed stilbenes that selectively and covalently modify the prominent plasma protein transthyretin in preference to more than 4,000 other human plasma proteins. They react chemoselectively with only one of eight lysine e-amino groups within transthyretin. The crystal structure confirms the expected binding orientation of the stilbene substructure and the anticipated conjugating amide bond. These covalent transthyretin kinetic stabilizers exhibit superior amyloid inhibition potency compared to their noncovalent counterparts, and they prevent cytotoxicity associated with amyloidogenesis. Though there are a few prodrugs that, upon metabolic activation, react with a cysteine residue inactivating a specific non-enzyme, we are unaware of designed small molecules that react with one lysine e-amine within a specific non-enzyme protein in a complex biological fluid.
Conflict of interest statement
JWK is a founder, shareholder and paid consultant for Foldrx Pharmaceuticals, Inc., a biotechnology company that specializes in the discovery and development of drug therapies for transthyretin amyloidoses.
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References
-
- Savi P, et al. Identification and biological activity of the active metabolite of clopidogrel. Thromb Haemost. 2000;84:891–896. - PubMed
-
- Estebanez-Perpina E, et al. Structural insight into the mode of action of a direct inhibitor of coregulator binding to the thyroid hormone receptor. Mol Endocrinol. 2007;21:2919–2928. - PubMed
-
- Cohen E, et al. Opposing activities protect against age-onset proteotoxicity. Science. 2006;313:1604–1610. - PubMed
-
- Hardy J, Selkoe DJ. The amyloid hypothesis of Alzheimer’s disease: progress and problems on the road to therapeutics. Science. 2002;297:353–356. - PubMed
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