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Evaluation of plant-derived semi-synthetic molecules against BRD3-BD2 protein: a computational strategy to combat breast cancer

机译:评价植物的半合成分子对BRD3-BD2蛋白质:一个计算策略对抗乳腺癌

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摘要

BRD3-BD2 protein belongs to the bromodomain and extra-terminal domain (BET) protein family. The over-expression of BRD3-BD2 protein contributes to the development of breast cancer by modulating the expression of many genes. In breast cancer cells, the estrogen receptor (ER) gene is overexpressed, which is facilitated by the recruitment of the H3K36 methyltransferase to the estrogen ER gene by the BRD3-BD2 protein. The inhibition of BRD3-BD2 protein suppresses the classical ER signaling pathway and inhibits the growth of cancer cells. Molecular docking and long-term molecular dynamics (MD) simulations were used to explore the binding mechanism and structural impact of aminoarylbenzosuberene (BCH) molecules on BRD3-BD2 protein. Our preliminary analysis revealed that BCH molecules interacted strongly with the BRD3-BD2 protein. These results were further supported and validated by various time-dependent MD-driven analyses. Therefore, we intend to suggest that BCH molecules could be used as potential therapeutic molecules against cancers associated with the overexpression of BRD3-BD2 protein. However, in vitro and in vivo investigations would be required to reinforce the finding.
机译:BRD3-BD2蛋白质属于bromodomain和extra-terminal域(打赌)蛋白家族。BRD3-BD2蛋白质的表达的贡献通过调节乳腺癌的发展许多基因的表达。细胞雌激素受体(ER)基因过表达,提供了便利招聘的H3K36甲基转移酶雌激素BRD3-BD2 ER基因的蛋白质。抑制BRD3-BD2蛋白质抑制了经典信号通路和抑制癌细胞的增长。长期分子动力学(MD)模拟被用来探索绑定机制和结构的影响aminoarylbenzosuberene (BCH)分子BRD3-BD2蛋白质。分析显示,BCH分子相互作用强烈的BRD3-BD2蛋白质。进一步通过各种支持和验证时间MD-driven分析。打算表明BCH分子作为治疗分子潜在的反对癌症相关的超表达BRD3-BD2蛋白质。调查需要加强发现。

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