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C-糖基化作为一种预防 PAINS 诱导的膜偶极电位改变的工具。

C-Glucosylation as a tool for the prevention of PAINS-induced membrane dipole potential alterations.

机构信息

Centro de Química Estrutural, Faculdade de Ciências, Universidade de Lisboa, Ed. C8, Campo Grande, 1749-016, Lisboa, Portugal.

Facultad de Ciencias y Artes, Universidad Católica Santa Teresa de Jesús de Ávila (UCAV), 05005, Avila, Spain.

出版信息

Sci Rep. 2021 Feb 24;11(1):4443. doi: 10.1038/s41598-021-83032-3.

Abstract

The concept of Pan-Assay Interference Compounds (PAINS) is regarded as a threat to the recognition of the broad bioactivity of natural products. Based on the established relationship between altered membrane dipole potential and transmembrane protein conformation and function, we investigate here polyphenols' ability to induce changes in cell membrane dipole potential. Ultimately, we are interested in finding a tool to prevent polyphenol PAINS-type behavior and produce compounds less prone to untargeted and promiscuous interactions with the cell membrane. Di-8-ANEPPS fluorescence ratiometric measurements suggest that planar lipophilic polyphenols-phloretin, genistein and resveratrol-act by decreasing membrane dipole potential, especially in cholesterol-rich domains such as lipid rafts, which play a role in important cellular processes. These results provide a mechanism for their labelling as PAINS through their ability to disrupt cell membrane homeostasis. Aiming to explore the role of C-glucosylation in PAINS membrane-interfering behavior, we disclose herein the first synthesis of 4-glucosylresveratrol, starting from 5-hydroxymethylbenzene-1,3-diol, via C-glucosylation, oxidation and Horner-Wadsworth-Emmons olefination, and resynthesize phloretin and genistein C-glucosides. We show that C-glucosylation generates compounds which are no longer able to modify membrane dipole potential. Therefore, it can be devised as a strategy to generate bioactive natural product derivatives that no longer act as membrane dipole potential modifiers. Our results offer a new technology towards rescuing bioactive polyphenols from their PAINS danger label through C-C ligation of sugars.

摘要

泛分析干扰化合物(PAINS)的概念被认为是对天然产物广泛生物活性识别的威胁。基于改变的膜偶极电位与跨膜蛋白构象和功能之间的既定关系,我们在这里研究多酚诱导细胞膜偶极电位变化的能力。最终,我们有兴趣找到一种工具来防止多酚类 PAINS 型行为,并产生不太容易与细胞膜发生非靶向和混杂相互作用的化合物。Di-8-ANEPPS 荧光比率测量表明,平面亲脂性多酚-根皮素、染料木黄酮和白藜芦醇通过降低膜偶极电位起作用,特别是在胆固醇丰富的区域如脂筏中,这些区域在重要的细胞过程中发挥作用。这些结果为它们通过破坏细胞膜动态平衡的能力被标记为 PAINS 提供了一种机制。为了探索 C-葡萄糖基化在 PAINS 膜干扰行为中的作用,我们在此首次合成了 4-葡萄糖基白藜芦醇,从 5-羟甲基苯-1,3-二醇开始,通过 C-葡萄糖基化、氧化和豪纳-瓦兹沃思-埃蒙斯烯烃化,以及重新合成根皮素和染料木黄酮 C-糖苷。我们表明,C-葡萄糖基化生成的化合物不再能够修饰膜偶极电位。因此,它可以被设计为一种生成不再作为膜偶极电位调节剂起作用的生物活性天然产物衍生物的策略。我们的结果提供了一种新技术,通过糖的 C-C 键合,将生物活性多酚从它们的 PAINS 危险标签中解救出来。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e23e/7904931/d185a3c0f7b6/41598_2021_83032_Fig1_HTML.jpg

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