Selectively targeting an inactive conformation of interleukin-2-inducible T-cell kinase by allosteric inhibitors

Author:

Han Seungil1,Czerwinski Robert M.2,Caspers Nicole L.1,Limburg David C.1,Ding WeiDong1,Wang Hong1,Ohren Jeffrey F.1,Rajamohan Francis1,McLellan Thomas J.1,Unwalla Ray1,Choi Chulho1,Parikh Mihir D.1,Seth Nilufer2,Edmonds Jason2,Phillips Chris1,Shakya Subarna2,Li Xin2,Spaulding Vikki2,Hughes Samantha1,Cook Andrew1,Robinson Colin1,Mathias John P.2,Navratilova Iva21,Medley Quintus G.2,Anderson David R.1,Kurumbail Ravi G.1,Aulabaugh Ann1

Affiliation:

1. Pfizer Worldwide Research, Eastern Point Road, Groton, CT 06340, U.S.A.

2. Pfizer Worldwide Research, 200 Cambridge Park Drive, Cambridge, MA 02140, U.S.A.

Abstract

ITK (interleukin-2-inducible T-cell kinase) is a critical component of signal transduction in T-cells and has a well-validated role in their proliferation, cytokine release and chemotaxis. ITK is an attractive target for the treatment of T-cell-mediated inflammatory diseases. In the present study we describe the discovery of kinase inhibitors that preferentially bind to an allosteric pocket of ITK. The novel ITK allosteric site was characterized by NMR, surface plasmon resonance, isothermal titration calorimetry, enzymology and X-ray crystallography. Initial screening hits bound to both the allosteric pocket and the ATP site. Successful lead optimization was achieved by improving the contribution of the allosteric component to the overall inhibition. NMR competition experiments demonstrated that the dual-site binders showed higher affinity for the allosteric site compared with the ATP site. Moreover, an optimized inhibitor displayed non-competitive inhibition with respect to ATP as shown by steady-state enzyme kinetics. The activity of the isolated kinase domain and auto-activation of the full-length enzyme were inhibited with similar potency. However, inhibition of the activated full-length enzyme was weaker, presumably because the allosteric site is altered when ITK becomes activated. An optimized lead showed exquisite kinome selectivity and is efficacious in human whole blood and proximal cell-based assays.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

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