a Department of Plant Sciences, School of Life Sciences , University of Hyderabad , Hyderabad 500046 , India.
b Catalysis Laboratory, School of Chemistry , University of Hyderabad , Hyderabad 500046 , India.
J Biomol Struct Dyn. 2019 Feb;37(3):623-640. doi: 10.1080/07391102.2018.1433554. Epub 2018 Feb 15.
Our study focus on the biological importance of synthesized 5β-dihydrocortisol (Dhc) and 5β-dihydrocortisol acetate (DhcA) molecules, the cytotoxic study was performed on breast cancer cell line (MCF-7) normal human embryonic kidney cell line (HEK293), the IC values for MCF-7 cells were 28 and 25 μM, respectively, whereas no toxicity in terms of cell viability was observed with HEK293 cell line. Further experiment proved that Dhc and DhcA induced 35.6 and 37.7% early apoptotic cells and 2.5, 2.9% late apoptotic cells, respectively, morphological observation of cell death through TUNEL assay revealed that Dhc and DhcA induced apoptosis in MCF-7 cells. The complexes of HSA-Dhc and HSA-DhcA were observed as static quenching, and the binding constants (K) was 4.7 ± .03 × 10 M and 3.9 ± .05 × 10 M and their binding free energies were found to be -6.4 and -6.16 kcal/mol, respectively. The displacement studies confirmed that lidocaine 1.4 ± .05 × 10 M replaced Dhc, and phenylbutazone 1.5 ± .05 × 10 M replaced by DhcA, which explains domain I and domain II are the binding sites for Dhc and DhcA. Further, FT-IR, synchronous spectroscopy, and CD results revealed that the secondary structure of HSA was altered in the presence of Dhc and DhcA. Furthermore, the atomic force microscopy and transmission electron microscopy showed that the dimensions like height and molecular size of the HSA-Dhc and HSA-DhcA complex were larger compared to HSA alone. Detailed analysis through molecular dynamics simulations also supported greater stability of HSA-Dhc and HSA-DhcA complexes, and root-mean-square-fluctuation interpreted the binding site of Dhc as domain IB and domain IIA for DhcA. This information is valuable for further development of steroid derivative with improved pharmacological significance as novel anti-cancer drugs.
我们的研究重点是合成的 5β-二氢皮质醇 (Dhc) 和 5β-二氢皮质醇醋酸酯 (DhcA) 分子的生物学重要性,细胞毒性研究在乳腺癌细胞系 (MCF-7) 和正常人胚胎肾细胞系 (HEK293) 上进行,MCF-7 细胞的 IC 值分别为 28 和 25 μM,而 HEK293 细胞系没有观察到细胞活力毒性。进一步的实验证明,Dhc 和 DhcA 分别诱导 35.6%和 37.7%的早期凋亡细胞和 2.5%和 2.9%的晚期凋亡细胞,通过 TUNEL 检测法观察到细胞死亡的形态学,Dhc 和 DhcA 诱导 MCF-7 细胞凋亡。HSA-Dhc 和 HSA-DhcA 复合物被观察为静态猝灭,结合常数 (K) 分别为 4.7±0.03×10 M 和 3.9±0.05×10 M,结合自由能分别为-6.4 和-6.16 kcal/mol。取代研究证实利多卡因 1.4±0.05×10 M 取代 Dhc,而苯丁唑酮 1.5±0.05×10 M 取代 DhcA,这表明结构域 I 和结构域 II 是 Dhc 和 DhcA 的结合位点。此外,傅里叶变换红外光谱、同步光谱和 CD 结果表明,HSA 的二级结构在 Dhc 和 DhcA 的存在下发生了改变。此外,原子力显微镜和透射电子显微镜显示,与单独的 HSA 相比,HSA-Dhc 和 HSA-DhcA 复合物的高度和分子尺寸等尺寸更大。通过分子动力学模拟的详细分析也支持 HSA-Dhc 和 HSA-DhcA 复合物具有更高的稳定性,均方根波动解释 Dhc 的结合位点为 DhcA 的结构域 IB 和结构域 IIA。这些信息对于进一步开发具有改善药理学意义的甾体衍生物作为新型抗癌药物具有重要意义。