Structure-Guided Design of Proteomimetics Targeting the SARS-CoV-2 S-RBD/hACE2 Interface.

Publication date: Jun 14, 2026

The SARS-CoV-2 Spike receptor-binding domain (S-RBD)/hACE2 interaction represents a challenging protein-protein interaction (PPI) target due to its large, shallow binding interface. Here, in silico alanine mutagenesis guided the structure-based design of constrained peptidomimetics that reproduce key hACE2 recognition elements. α1-helix-derived mimetics (Glu23-Ser44) were stabilized using peptide stapling strategies, while antiparallel β-sheet mimetics (Thr347-Leu359) were generated through head-to-tail macrocyclization incorporating a d-Pro/l-Pro motif. Covalent linkage of these two secondary structure mimetics yielded proteomimetic 28, designed to preserve the spatial organization of the hACE2 binding interface. Compound 28 selectively binds SARS-CoV-2 S-RBD and disrupts the S-RBD/hACE2 interaction in biophysical and cellular assays, inhibiting pseudovirus entry (IC of 6. 6 μM). Importantly, 28 displays high stability in lung epithelial models (t > 24 h) and low epithelial permeability (P = 2. 03 cD7 10 cm.s), supporting its potential for intranasal antiviral delivery. These findings establish a proof-of-concept for proteomimetics as promising inhibitors of challenging PPIs.

Concepts Keywords
Antiviral Binding
Leu359 Challenging
Peptidomimetics Cov
Pro Design
Proteins Guided
Hace2
Interaction
Interface
Mimetics
Proteomimetics
Rbd
Sars
Structure

Semantics

Type Source Name
drug DRUGBANK L-Alanine

Original Article

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