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Search for aglycone isoflavone from soybean as candidate for pelvic organ prolapse treatment: In silico study of TGF-β1, Hsp70, and Bcl-xl signals

机译:从大豆中寻找糖苷异黄酮作为盆腔器官脱垂治疗的候选药物:计算机模拟研究TGF-β1,Hsp70和Bcl-xl信号

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The purpose of this study was to analyze molecular docking as a search for aglycone isoflavone in TGF-β, Hsp70, and apoptosis pathways that are useful for pelvic organ prolapse treatment. Thisin silicostudy involved procedures of searching for protein and nucleotide sequences, three-dimensional structure modeling, docking, and interaction analysis. Against TGF-β signal, the genistein facilitated interaction between TGF-β and TGF-β receptor, while against Hsp70 signal, the daidzein facilitated interaction of HSF and Hsp70. Against NF-κB signal for Bcl-xl gene, daidzein and glycitein facilitated interaction of NF-κB and Bcl-xl gene. It was concluded that aglycone isoflavone of the soybean could modulate TGF-β1, Hsp70, and Bcl-xl anti-apoptotic signals. Therefore, aglycone isoflavone derived from soybean can become an alternative nutrient or candidate for herbal product for pelvic organ prolapse treatment.
机译:这项研究的目的是分析分子对接,以寻找TGF-β,Hsp70和细胞凋亡途径中的苷元异黄酮,这些途径可用于盆腔器官脱垂治疗。该计算机科学研究涉及蛋白质和核苷酸序列搜索,三维结构建模,对接和相互作用分析的过程。金雀异黄素针对TGF-β信号促进了TGF-β与TGF-β受体之间的相互作用,而大豆黄酮则针对Hsp70信号促进了HSF与Hsp70的相互作用。大豆黄酮和糖精蛋白针对Bcl-xl基因的NF-κB信号,促进了NF-κB和Bcl-xl基因的相互作用。结论是大豆苷元异黄酮可以调节TGF-β1,Hsp70和Bcl-xl抗凋亡信号。因此,大豆来源的糖苷异黄酮可以成为盆腔器官脱垂治疗的替代营养物或草药产品的候选物。

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