IBIOBA - MPSP   22718
INSTITUTO DE INVESTIGACION EN BIOMEDICINA DE BUENOS AIRES - INSTITUTO PARTNER DE LA SOCIEDAD MAX PLANCK
Unidad Ejecutora - UE
artículos
Título:
Bidirectional Allosteric Communication between the ATP-Binding Site and the Regulatory PIF Pocket in PDK1 Protein Kinase
Autor/es:
JÖRG O. SCHULZE; SONJA NEIMANIS; STEFAN ZEUZEM; MARÍA-NATALIA LISA; RICARDO M. BIONDI; KATRIEN BUSSCHOTS; DALIBOR ODADZIC; AMANDA K. HERBRAND; FRANCESCO L. GERVASIO; GIORGIO SALADINO; EVELYN SÜß; VALERIE HINDIE; PEDRO M. ALZARI
Revista:
CHEMISTRY & BIOLOGY
Editorial:
CELL PRESS
Referencias:
Lugar: United States; Año: 2016 vol. 23 p. 1193 - 1205
ISSN:
1074-5521
Resumen:
Allostery is a phenomenon observed in many proteins where binding of a macromolecular partner or a small-molecule ligand at one location leads to specific perturbations at a site not in direct contact with the region where the binding occurs. The list of proteins under allosteric regulation includes AGC protein kinases. AGC kinases have a conserved allosteric site, the phosphoinositide-dependent protein kinase 1 (PDK1)-interacting fragment (PIF) pocket, which regulates protein ATP-binding, activity, and interaction with substrates. In this study, we identify small molecules that bind to the ATP-binding site and affect the PIF pocket of AGC kinase family members, PDK1 and Aurora kinase. We describe the mechanistic details and show that although PDK1 and Aurora kinase inhibitors bind to the conserved ATP-binding site, they differentially modulate physiological interactions at the PIF-pocket site. Our work outlines a strategy for developing bidirectional small-molecule allosteric modulators of protein kinases and other signaling proteins.