4.5 Article

C-Terminal Residue Optimization and Fragment Merging: Discovery of a Potent Peptide-Hybrid Inhibitor of Dengue Protease

Journal

ACS MEDICINAL CHEMISTRY LETTERS
Volume 5, Issue 9, Pages 1037-1042

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/ml500245v

Keywords

Dengue virus; protease inhibitor; peptide; fragment merging

Funding

  1. German Academic Exchange Service
  2. National Council for Scientific and Technological Development (CNPq), Brazil
  3. Deutsche Forschungsgemeinschaft [KL-1356/3-1]

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Dengue virus protease is a promising target for the development of antiviral drugs. We describe here a two-step rational optimization that led to the discovery of the potent inhibitor 35 with nanomolar binding affinity at dengue protease serotype 2 (IC50 = 0.6 mu M, K-i = 0.4 mu M). First, a large number of natural and non-natural amino acids were screened at the C-terminal position of the previously reported, canonical peptide sequence (Cap-Arg-Lys-Nle-NH2). Compared to the reference compound 1 (Bz-Arg-Lys-Nle-NH2, IC50 = 13.3 mu M), a 4-fold higher inhibitory potential was observed with the incorporation of a C-terminal phenylglycine (compound 9, IC50 = 3.3 mu M). Second, we applied fragment merging of 9 with the previously reported thiazolidinedione peptide hybrid 33 (IC50 = 2.5 mu M). This approach led to the fusion of two inhibitor-fragments with micromolar affinity into a 20-fold more potent, competitive inhibitor of dengue protease.

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