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硫嘌呤衍生物诱导 Fpg/Nei DNA 糖基化酶抑制:结构、动态和功能见解。

Thiopurine Derivative-Induced Fpg/Nei DNA Glycosylase Inhibition: Structural, Dynamic and Functional Insights.

机构信息

Centre de Biophysique Moléculaire, UPR4301 CNRS, rue Charles Sadron, CEDEX 2, F-45071 Orléans, France.

Institut de Chimie Organique et Analytique, UMR7311 CNRS-Orleans University, Université d'Orléans, Pôle de Chimie, rue de Chartres, F-45100 Orléans, France.

出版信息

Int J Mol Sci. 2020 Mar 17;21(6):2058. doi: 10.3390/ijms21062058.

Abstract

DNA glycosylases are emerging as relevant pharmacological targets in inflammation, cancer and neurodegenerative diseases. Consequently, the search for inhibitors of these enzymes has become a very active research field. As a continuation of previous work that showed that 2-thioxanthine (2TX) is an irreversible inhibitor of zinc finger (ZnF)-containing Fpg/Nei DNA glycosylases, we designed and synthesized a mini-library of 2TX-derivatives (TXn) and evaluated their ability to inhibit Fpg/Nei enzymes. Among forty compounds, four TXn were better inhibitors than 2TX for Fpg. Unexpectedly, but very interestingly, two dithiolated derivatives more selectively and efficiently inhibit the zincless finger (ZnLF)-containing enzymes (human and mimivirus Neil1 DNA glycosylases hNeil1 and MvNei1, respectively). By combining chemistry, biochemistry, mass spectrometry, blind and flexible docking and X-ray structure analysis, we localized new TXn binding sites on Fpg/Nei enzymes. This endeavor allowed us to decipher at the atomic level the mode of action for the best TXn inhibitors on the ZnF-containing enzymes. We discovered an original inhibition mechanism for the ZnLF-containing Fpg/Nei DNA glycosylases by disulfide cyclic trimeric forms of dithiopurines. This work paves the way for the design and synthesis of a new structural class of inhibitors for selective pharmacological targeting of hNeil1 in cancer and neurodegenerative diseases.

摘要

DNA 糖苷酶在炎症、癌症和神经退行性疾病中作为相关的药理靶点而备受关注。因此,寻找这些酶的抑制剂已成为一个非常活跃的研究领域。作为先前研究的延续,该研究表明 2-硫代嘌呤(2TX)是锌指(ZnF)含 Fpg/Nei DNA 糖苷酶的不可逆抑制剂,我们设计并合成了一个 2TX 衍生物(TXn)的小型文库,并评估了它们抑制 Fpg/Nei 酶的能力。在所研究的四十种化合物中,有四种 TXn 比 2TX 对 Fpg 的抑制作用更强。出人意料但非常有趣的是,两种二硫代化合物更有选择性和高效地抑制不含锌指(ZnLF)的酶(人 Nei1 和 mimivirus Nei1 DNA 糖苷酶 hNeil1 和 MvNei1)。通过结合化学、生物化学、质谱、盲法和灵活对接以及 X 射线结构分析,我们在 Fpg/Nei 酶上定位了新的 TXn 结合位点。这项研究使我们能够在原子水平上对 ZnF 含酶的最佳 TXn 抑制剂的作用模式进行解码。我们发现了一种针对 ZnLF 含 Fpg/Nei DNA 糖苷酶的新颖抑制机制,即二硫代嘌呤的环状三聚体形式。这项工作为设计和合成一类新的抑制剂铺平了道路,这些抑制剂可用于选择性地针对癌症和神经退行性疾病中的 hNeil1 进行药理学靶向治疗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f607/7139703/956081e557e4/ijms-21-02058-g001.jpg

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