Topological control of cytokine receptor signaling induces differential effects in hematopoiesis
Author(s) -
Kritika Mohan,
George Ueda,
Ah Ram Kim,
Kevin M. Jude,
Jorge A. Fallas,
Yu Guo,
Maximillian Hafer,
Yi Miao,
Robert A. Saxton,
Jacob Piehler,
Vijay G. Sankaran,
David Baker,
K. Christopher García
Publication year - 2019
Publication title -
science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 12.556
H-Index - 1186
eISSN - 1095-9203
pISSN - 0036-8075
DOI - 10.1126/science.aav7532
Subject(s) - extracellular , receptor , topology (electrical circuits) , signal transduction , microbiology and biotechnology , transmembrane protein , chemistry , cytokine receptor , cytokine , dimer , erythropoietin receptor , biology , biochemistry , immunology , mathematics , combinatorics , organic chemistry
Although tunable signaling by G protein-coupled receptors can be exploited through medicinal chemistry, a comparable pharmacological approach has been lacking for the modulation of signaling through dimeric receptors, such as those for cytokines. We present a strategy to modulate cytokine receptor signaling output by use of a series of designed C2-symmetric cytokine mimetics, based on the designed ankyrin repeat protein (DARPin) scaffold, that can systematically control erythropoietin receptor (EpoR) dimerization orientation and distance between monomers. We sampled a range of EpoR geometries by varying intermonomer angle and distance, corroborated by several ligand-EpoR complex crystal structures. Across the range, we observed full, partial, and biased agonism as well as stage-selective effects on hematopoiesis. This surrogate ligand strategy opens access to pharmacological modulation of therapeutically important cytokine and growth factor receptor systems.
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