Topological control of cytokine receptor signaling induces differential effects in hematopoiesis

Autor(en): Mohan, Kritika
Ueda, George
Kim, Ah Ram
Jude, Kevin M.
Fallas, Jorge A.
Guo, Yu
Hafer, Maximillian
Miao, Yi
Saxton, Robert A.
Piehler, Jacob 
Sankaran, Vijay G.
Baker, David
Garcia, K. Christopher
Stichwörter: ACTIVATION; AGONIST; ANKYRIN REPEAT; DIMERIZATION; ERYTHROPOIETIN; GROWTH-HORMONE; Multidisciplinary Sciences; PLEIOTROPY; PROTEINS; Science & Technology - Other Topics; STRUCTURE REFINEMENT; TRANSMEMBRANE DOMAIN
Erscheinungsdatum: 2019
Herausgeber: AMER ASSOC ADVANCEMENT SCIENCE
Journal: SCIENCE
Volumen: 364
Ausgabe: 6442
Startseite: 750+
Zusammenfassung: 
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-EpoRcomplex 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.
ISSN: 00368075
DOI: 10.1126/science.aav7532

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