Combinatorial Screening Identifies Novel Promiscuous Matrix Metalloproteinase Activities that Lead to Inhibition of the Therapeutic Target IL-13

Publication date

2015-11-19

Authors

Urbach, Carole
Gordon, Nathaniel C
Strickland, Ian
Lowne, David
Joberty-Candotti, Cathy
May, Richard
Herath, Athula
Hijnen, D. J.ISNI 0000000395833381
Thijs, Judith L.
Bruijnzeel-Koomen, Carla A.ISNI 0000000043719227

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Document Type

Article

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taverne

Abstract

Summary The practical realization of disease modulation by catalytic degradation of a therapeutic target protein suffers from the difficulty to identify candidate proteases, or to engineer their specificity. We identified 23 measurable, specific, and new protease activities using combinatorial screening of 27 human proteases against 24 therapeutic protein targets. We investigate the cleavage of monocyte chemoattractant protein 1, interleukin-6 (IL-6), and IL-13 by matrix metalloproteinases (MMPs) and serine proteases, and demonstrate that cleavage of IL-13 leads to potent inhibition of its biological activity in vitro. MMP-8 degraded human IL-13 most efficiently in vitro and ex vivo in human IL-13 transgenic mouse bronchoalveolar lavage. Hence, MMP-8 is a therapeutic protease lead against IL-13 for inflammatory conditions whereby reported genetic and genomics data suggest an involvement of MMP-8. This work describes the first exploitation of human enzyme promiscuity for therapeutic applications, and reveals both starting points for protease-based therapies and potential new regulatory networks in inflammatory disease.

Keywords

Taverne, General Medicine, Biochemistry, Molecular Medicine, Molecular Biology, Pharmacology, Drug Discovery, Clinical Biochemistry, Journal Article, Research Support, Non-U.S. Gov't

Citation

Urbach, C, Gordon, N C, Strickland, I, Lowne, D, Joberty-Candotti, C, May, R, Herath, A, Hijnen, D J, Thijs, J L, Bruijnzeel-Koomen, C A, Minter, R R, Hollfelder, F & Jermutus, L 2015, 'Combinatorial Screening Identifies Novel Promiscuous Matrix Metalloproteinase Activities that Lead to Inhibition of the Therapeutic Target IL-13', Chemistry & Biology, vol. 22, no. 11, pp. 1442-1452. https://doi.org/10.1016/j.chembiol.2015.09.013