Synthesis, docking studies, in vitro cytotoxicity evaluation and DNA damage mechanism of new tyrosine-based tripeptides

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Küçük Resim

Tarih

2023

Yazarlar

Çalışkan Eray
Kaplan, A.
Şekerci, G.
Çapan, İ.
Tekin, S.
Erkan Sultan
Koran Kenan
Sandal Süleyman
Görgülü, A. O.

Dergi Başlığı

Dergi ISSN

Cilt Başlığı

Yayıncı

Wiley

Erişim Hakkı

info:eu-repo/semantics/openAccess

Özet

Peptides are one of the leading groups of compounds that have been the subject of a great deal of biological research and still continue to attract researchers' attention. In this study, a series of tripeptides based on tyrosine amino acids were synthesized by the triazine method. The cytotoxicity properties of all compounds against human cancer cell lines (MCF-7), ovarian (A2780), prostate (PC-3), and colon cancer cell lines (Caco-2) were determined by the 3-[4,5-dimethylthiazol-2-yl]-2,5 diphenyl tetrazolium bromide assay method, and % cell viability and logIC50 values of the compounds were calculated. Significant decreases in cell viability were observed in all cells (p < 0.05). The comet assay method was used to understand that the compounds that showed a significant decrease in cell viability had this effect through DNA damage. Most of the compounds exhibited cytotoxicity by DNA damage mechanism. Besides, their interactions between investigated molecule groups with PDB ID: 3VHE, 3C0R, 2ZCL, and 2HQ6 target proteins corresponding to cancer cell lines, respectively, were investigated by docking studies. Finally, molecules with high biological activity against biological receptors were determined by ADME analysis.

Açıklama

Anahtar Kelimeler

ADME, cytotoxicity, DNA damage, molecular docking, peptides

Kaynak

Journal of Biochemical and Molecular Toxicology

WoS Q Değeri

Q2

Scopus Q Değeri

N/A

Cilt

37

Sayı

8

Künye

Çalışkan, E., Kaplan, A., Şekerci, G., Çapan, İ., Tekin, S., Erkan, S., ... & Görgülü, A. O. (2023). Synthesis, docking studies, in vitro cytotoxicity evaluation and DNA damage mechanism of new tyrosine‐based tripeptides. Journal of Biochemical and Molecular Toxicology, e23388.