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从叶子中分离得到的 6,6'-二羟基硫代比那普里定(DTBN)是蛋白激酶 C 催化活性的抑制剂。

6,6'-Dihydroxythiobinupharidine (DTBN) Purified from Leaves Is an Inhibitor of Protein Kinase C Catalytic Activity.

机构信息

Defence Institute of High Altitude Research (DIHAR), Defence Research and Development Organisation (DRDO) Leh, Ladakh UT-194101, India.

The Shraga Segal Department of Microbiology, Immunology and Genetics Faculty of Health Sciences, Ben-Gurion University of the Negev, Beer Sheva 8400501, Israel.

出版信息

Molecules. 2021 May 8;26(9):2785. doi: 10.3390/molecules26092785.

Abstract

Water lily ( bioactive extracts have been widely used in traditional medicine owing to their multiple applications against human ailments. Phyto-active extracts and their purified and synthetic derivatives have attracted the attention of ethnobotanists and biochemists. Here, we report that 6,6'-dihydroxythiobinupharidine (DTBN), purified from extracts of (L.) Sm. leaves, is an effective inhibitor of the kinase activity of members of the protein kinase C (PKC) family using in vitro and in silico approaches. We demonstrate that members of the conventional subfamily of PKCs, PKCα and PKCγ, were more sensitive to DTBN inhibition as compared to novel or atypical PKCs. Molecular docking analysis demonstrated the interaction of DTBN, with the kinase domain of PKCs depicting the best affinity towards conventional PKCs, in accordance with our in vitro kinase activity data. The current study reveals novel targets for DTBN activity, functioning as an inhibitor for PKCs kinase activity. Thus, this and other data indicate that DTBN modulates key cellular signal transduction pathways relevant to disease biology, including cancer.

摘要

睡莲(由于其对人类疾病的多种应用,生物活性提取物已被广泛用于传统医学。植物活性提取物及其纯化和合成衍生物引起了民族植物学家和生物化学家的关注。在这里,我们报告说,从 (L.) Sm. 叶提取物中纯化的 6,6'-二羟基硫代比纳啶(DTBN)是一种有效的蛋白激酶 C(PKC)家族激酶活性抑制剂,使用体外和计算方法。我们证明,与新型或非典型 PKCs 相比,经典亚家族 PKCs 的成员 PKCα 和 PKCγ 对 DTBN 抑制更为敏感。分子对接分析表明 DTBN 与 PKCs 的激酶结构域相互作用,与我们的体外激酶活性数据一致,显示出对经典 PKCs 的最佳亲和力。本研究揭示了 DTBN 活性的新靶标,作为 PKCs 激酶活性的抑制剂。因此,这些和其他数据表明,DTBN 调节与疾病生物学相关的关键细胞信号转导途径,包括癌症。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/09b3/8125885/05935eb70a1b/molecules-26-02785-g001.jpg

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