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虎杖苷抑制组蛋白去乙酰化酶 1 并对头颈鳞状细胞癌显示出抗血管生成作用。

Polydatin inhibits histone deacetylase 1 and shows an anti-angiogenic action in head and neck squamous cell carcinoma.

机构信息

Department of Biochemistry, University of Kashmir, Srinagar, India.

Department of Bioengineering, Integral University, Lucknow, Uttar Pradesh, 226026, India.

出版信息

Med Oncol. 2024 Oct 14;41(11):278. doi: 10.1007/s12032-024-02490-7.

Abstract

Polydatin, a natural derivative of resveratrol, has shown many anticancer properties. However, the underlying mechanisms of its anticancer properties including its effect on the epigenetic landscape are not well understood. Here, we explored the effect of polydatin on histone deacetylase 1 (HDAC1) activity. We used in silico approaches to assess the possible binding of polydatin to the active site pockets of HDAC1 and in vitro approaches to test the potential effects of the interaction on its enzymatic activity. As compared to SAHA, an approved drug, the polydatin showed stronger and stable binding to the HDAC1. The binding energy, conformational changes, formation of extra hydrogen bonding, and other interactions within and outside the active site all favour largely stable and strong polydatin binding to the enzyme. Further, the ADME and toxicity prediction values are encouraging for the evaluation of polydatin as a drug. The laboratory leg of the study substantiated that the polydatin binding was strong and stable enough to inhibit HDAC1 activity in UMS-CC-22B cells as demonstrated by an increase in H3K9 acetylation. In addition, polydatin treated cells showed attenuated proliferation. The in vitro tube formation and migration by HUVEC and UM-SCC-22B cells were inhibited by polydatin. The decreased tube formation due to HDAC1 inhibition is possibly due to up-regulation of the anti-angiogenic gene - TSP1 in UM-SCC-22B cells. As compared to SAHA, more promising results were shown both in its computational calculations and on the cell physiology features. Stronger and stable binding, more anti-proliferative and anti-angiogenic potential were observed with respect to polydatin. Further, the cell death was more pronounced with SAHA treatment. Therefore, polydatin might be a better anticancer drug and can have a potential to replace SAHA in combinational therapeutic regimen.

摘要

虎杖苷是白藜芦醇的天然衍生物,具有多种抗癌特性。然而,其抗癌特性的潜在机制,包括对表观遗传景观的影响,尚不清楚。在这里,我们研究了虎杖苷对组蛋白去乙酰化酶 1(HDAC1)活性的影响。我们使用计算机模拟方法来评估虎杖苷与 HDAC1 活性位点口袋结合的可能性,并通过体外方法来测试这种相互作用对其酶活性的潜在影响。与已批准的药物 SAHA 相比,虎杖苷与 HDAC1 的结合更强且更稳定。与酶的结合能、构象变化、额外氢键的形成以及活性位点内外的其他相互作用都有利于虎杖苷与酶的稳定且强结合。此外,ADME 和毒性预测值对虎杖苷作为药物的评价是令人鼓舞的。实验室研究证实,虎杖苷与 HDAC1 的结合足够强且稳定,可以抑制 UMS-CC-22B 细胞中的 HDAC1 活性,表现为 H3K9 乙酰化增加。此外,虎杖苷处理的细胞增殖受到抑制。虎杖苷抑制 HUVEC 和 UM-SCC-22B 细胞的体外管形成和迁移。由于 HDAC1 抑制,管形成减少可能是由于 UM-SCC-22B 细胞中抗血管生成基因 TSP1 的上调。与 SAHA 相比,虎杖苷在计算和细胞生理特征方面都显示出更有前途的结果。与 SAHA 相比,虎杖苷表现出更强和更稳定的结合、更强的增殖抑制和更强的抗血管生成潜力。此外,SAHA 处理的细胞死亡更明显。因此,虎杖苷可能是一种更好的抗癌药物,并有可能在联合治疗方案中替代 SAHA。

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