Characterization of a potent human interleukin-11 agonist

Author:

HARMEGNIES Dimitri1,WANG Xiao-Ming1,VANDENBUSSCHE Paul1,LEON Arnaud2,VUSIO Patricia2,GRÖTZINGER Joachim3,JACQUES Yannick2,GOORMAGHTIGH Erik4,DEVREESE Bart5,CONTENT Jean1

Affiliation:

1. Institut Pasteur de Bruxelles, rue Engeland 642, B-1180 Brussels, Belgium

2. Groupe Recherche Cytokines/Récepteurs, Unité INSERM 463, Institut de Biologie, 9 Quai Moncousu, 44035, Nantes Cedex 01, France

3. Department of Biochemistry, Christian-Albrechts-Universitat zu Kiel, Olshausenstrasse 40, D-24098, Kiel, Germany

4. Free University of Brussels, Structure and Function of Biological Membranes, CP206/2, B-1050 Brussels, Belgium

5. Ghent University, Laboratory for Protein Biochemistry and Protein Engineering, B-9000 Ghent, Belgium

Abstract

Human interleukin-11 (hIL-11) is a multi-potential cytokine that is involved in numerous biological activities, such as haematopoiesis, osteoclastogenesis, neurogenesis and female fertility, and also displays anti-inflammatory properties. IL-11 is used clinically to treat chemotherapy-induced thrombocytopenia. Because of its broad spectrum of action, improved IL-11 agonists, as well as IL-11 antagonists, could be of interest for numerous clinical applications. IL-11 signalling is dependent on the formation of a tripartite ligand–receptor complex consisting of IL-11, the IL-11R (IL-11 receptor) α subunit (responsible for the specificity of the interaction) and gp130 (glycoprotein 130) receptor β subunit (responsible for signal transduction). The interaction between IL-11 and IL-11Rα subunit occurs at its recently assigned site I. We have designed an IL-11 mutein whose hydrophobicity at site I has been increased. The mutein has been characterized in terms of structure, affinity, specificity and bioactivity. Electrophoretic analysis, gel filtration, IR spectroscopy and CD indicate that this new protein is more compact than wild-type IL-11. It binds to IL-11Rα with a three-fold-enhanced affinity, and retains the ability to recruit gp130 through site II. However, analysis of its biological activity revealed a complex pattern: although this mutein is 60–400-fold more active than wild-type IL-11 on the proliferation of 7TD1 murine hybridoma cell, it is less active than IL-11 on the proliferation of B9 cells, another murine hybridoma cell line. The results are interpreted on the basis of an IL-11 conformational change induced by the mutations, and the preferential use by the mutein of another unknown transducing receptor chain.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

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