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三肽连接的双环磷腈缀合物:在癌细胞系受体中的化合物结合的分子对接分析以及体外细胞毒性和遗传毒性活性的合成。

Tripeptide linked dispiro cyclotriphosphazene conjugates: Synthesis, molecular docking analysis of compounds binding within cancer cell line receptors and in vitro cytotoxic and genotoxic activities.

机构信息

Department of Chemistry, Faculty of Science, Bingöl University, Bingöl 12000, Turkey.

Department of Pharmaceutical Basic Sciences, Faculty of Pharmacy, Gazi University, 06330, Ankara, Turkey.

出版信息

Bioorg Chem. 2024 Sep;150:107621. doi: 10.1016/j.bioorg.2024.107621. Epub 2024 Jul 9.

Abstract

The novel dioxybiphenyl bridged-cyclotriphosphazenes (DPP) bearing tripeptide were synthesized and investigated for their molecular docking analysis, visualizing their binding profiles within various cancer cell line receptors and in vitro cytotoxic and genotoxic properties. The dipeptide compound (Tyr-Phe) was treated with various amino acids to obtain the tripeptide compounds (Tyr-Phe-Gly, Tyr-Phe-Ala, Tyr-Phe-Val, Tyr-Phe-Phe, and Tyr-Phe-Leu). These synthesized tripeptides were subsequently treated with DPP to obtain novel phosphazene compounds bearing tripeptide structures. As a result, the synthesis of target molecules with phosphazene compound in the center and biphenyl and tripeptide groups in the side arms was obtained for the first time in this study. Examining the cytotoxic studies in vitro of our newly synthesized compounds demonstrated the anticancer properties against four selected human cancer cell lines, including breast (MCF-7), ovarian (A2780), prostate (PC-3), and colon (Caco-2) cancer cells. The Comet Assay analysis determined that the cell death mechanism of most of the compounds with cytotoxic activity stemmed from the DNA damage mechanism. Among the compounds, the DPP-Tyr-Phe-Phe compound seems to have the best anticancer activity against the subjected cell lines (Except for A2780) with IC values equal to 20.18, 72.14, 12.21, and 5.17 μM against breast, ovarian, prostate, and colon cancer cell lines, respectively. For this reason, the molecular docking analysis was conducted for the DTPP compound to visualize its binding geometry and profile within the target enzyme's binding site associated with the specific cancer cell line. The analysis revealed that the DTPP derivative exhibited an optimal binding conformation and characteristics within the target enzyme's binding site, aligning well with the experimental data. Based on the data, these compounds are believed to be strong candidate molecules for both pharmaceutical and clinical applications.

摘要

新型二氧双环磷腈桥联环三磷腈(DPP)键合三肽的合成及其分子对接分析研究,以可视化它们在各种癌细胞系受体中的结合模式以及体外细胞毒性和遗传毒性性质。二肽化合物(Tyr-Phe)与各种氨基酸处理,得到三肽化合物(Tyr-Phe-Gly、Tyr-Phe-Ala、Tyr-Phe-Val、Tyr-Phe-Phe 和 Tyr-Phe-Leu)。这些合成的三肽随后与 DPP 处理,得到新型磷腈键合三肽结构的化合物。因此,首次在本研究中获得了以磷腈化合物为中心,联苯和三肽基团为侧臂的目标分子的合成。体外细胞毒性研究表明,我们新合成的化合物具有针对四种选定的人癌细胞系(包括乳腺癌(MCF-7)、卵巢癌(A2780)、前列腺癌(PC-3)和结肠癌(Caco-2))的抗癌特性。彗星分析确定,大多数具有细胞毒性活性的化合物的细胞死亡机制源于 DNA 损伤机制。在这些化合物中,DPP-Tyr-Phe-Phe 化合物似乎对所研究的细胞系(除 A2780 外)具有最佳的抗癌活性,其对乳腺癌、卵巢癌、前列腺癌和结肠癌细胞系的 IC50 值分别为 20.18、72.14、12.21 和 5.17 μM。因此,对 DTPP 化合物进行了分子对接分析,以可视化其在与特定癌细胞系相关的靶酶结合位点内的结合几何形状和模式。分析表明,DTPP 衍生物在靶酶结合位点内表现出最佳的结合构象和特性,与实验数据吻合良好。基于这些数据,这些化合物被认为是药物和临床应用的强有力候选分子。

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