Abstract
Mouse double minute 2 homolog (MDM2, Hdm2) is an important negative regulator of the tumor suppressor p53. Using a mRNA based display technique to screen a library of >1012in vitro-translated cyclic peptides, we have identified a macrocyclic ligand that shows picomolar potency on MDM2. X-Ray crystallography reveals a novel binding mode utilizing a unique pharmacophore to occupy the Phe/Trp/Leu pockets on MDM2. Conjugation of a cyclic cell-penetrating peptide (cCPP) to the initially non cell-permeable ligand enables cellular uptake and a pharmacodynamic response in SJSA-1 cells. The demonstrated enhanced intracellular availability of cyclic peptides that are identified by a display technology exemplifies a process for the application of intracellular tools for drug discovery projects.
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CITATION STYLE
Schneider, A. F. L., Kallen, J., Ottl, J., Reid, P. C., Ripoche, S., Ruetz, S., … Marzinzik, A. L. (2021). Discovery, X-ray structure and CPP-conjugation enabled uptake of p53 / MDM2 macrocyclic peptide inhibitors. RSC Chemical Biology, 2(6), 1661–1668. https://doi.org/10.1039/d1cb00056j
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