ArticleMarine biotechnology (New York, N.Y.)2025
Prediction and Assessment of Anticancer, Antiproliferative, Pharmacokinetic Properties, and Human Serum Albumin Binding Propensity of a New Bioactive Marine Cyclic Dipeptide from Exiguobacterium profundum.
Article in Marine biotechnology (New York, N.Y.), 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
A new cyclic dipeptide, cyclo(phenylalanine-proline) (cFP), was isolated from the marine bacterium Exiguobacterium profundum SW22 and characterized by NMR and high-resolution mass spectrometry. In silico profiling predicted favorable pharmacokinetic and drug-like properties for cFP. The compound demonstrated dose-dependent cytotoxicity against human breast (MDA MB-231), pancreatic (PAN C1), and prostate (PC 3) cancer cell lines with IC₅₀ values of 47.24 ± 0.42, 40.96 ± 0.68, and 110 ± 1.48 µM, respectively, accompanied by apoptosis-associated morphological changes. Biophysical studies demonstrated strong binding affinity between cFP and human serum albumin (HSA), confirmed through UV-visible absorption spectroscopy, fluorescence quenching, and circular dichroism analyses, with validation using well-characterized reference ligand warfarin as control. Results suggest static quenching via ground-state complex formation with negligible lifetime changes, consistent with control molecule (warfarin) binding via hydrogen bonding and van der Waals interactions, accompanied by ligand-induced decreases in HSA α-helical content. Molecular docking studies of HSA with cFP and warfarin revealed strong binding affinities for both compounds. Further, the molecular dynamics simulations over a 50 ns timeframe confirmed the enhanced stability and persistent interaction of the cFP-HSA complex. Results highlight the cFP as a promising bioactive peptide with potential anticancer, pharmacokinetic and serum binding efficacies advocating further preclinical development for anticancer therapy.
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