GTP-State-Selective Cyclic Peptide Ligands of K-Ras(G12D) Block Its Interaction with Raf

Ziyang Zhang(Howard Hughes Medical Institute), Rong Gao(The University of Tokyo), Qi Hu(Howard Hughes Medical Institute), Hayden Peacock(The University of Tokyo), D. Matthew Peacock(Howard Hughes Medical Institute), Shizhong Dai(Howard Hughes Medical Institute), Kevan M. Shokat(Howard Hughes Medical Institute), Hiroaki Suga(The University of Tokyo)
ACS Central Science
September 23, 2020
Cited by 118Open Access
Full Text

Abstract

translation-mRNA display selection platform. These cyclic peptides show preferential binding to the GTP-bound state of K-Ras(G12D) over the GDP-bound state and block Ras-Raf interaction. A co-crystal structure of peptide KD2 with K-Ras(G12D)·GppNHp reveals that this peptide binds in the Switch II groove region with concomitant opening of the Switch II loop and a 40° rotation of the α2 helix, and that a threonine residue (Thr10) on KD2 has direct access to the mutant aspartate (Asp12) on K-Ras. Replacing this threonine with non-natural amino acids afforded peptides with improved potency at inhibiting the interaction between Raf1-RBD and K-Ras(G12D) but not wildtype K-Ras. The union of G12D over wildtype selectivity and GTP state/GDP state selectivity is particularly desirable, considering that oncogenic K-Ras(G12D) exists predominantly in the GTP state in cancer cells, and wildtype K-Ras signaling is important for the maintenance of healthy cells.


Related Papers

No related papers found

Powered by citation graph analysis