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在肝微粒体和胞质溶胶中,针对抗癌不对称双吖啶 C-2028 的谷胱甘肽 S-缀合,进行体外酶动力学和基于 NMR 的产物阐明:谷胱甘肽 S-转移酶 M1-1 同工酶的主要作用。

In Vitro Enzyme Kinetics and NMR-Based Product Elucidation for Glutathione S-Conjugation of the Anticancer Unsymmetrical Bisacridine C-2028 in Liver Microsomes and Cytosol: Major Role of Glutathione S-Transferase M1-1 Isoenzyme.

机构信息

Department of Pharmaceutical Technology and Biochemistry, Faculty of Chemistry, Gdańsk University of Technology, Gabriela Narutowicza Str. 11/12, 80-233 Gdańsk, Poland.

Institute of Bioorganic Chemistry, Polish Academy of Sciences, Zygmunta Noskowskiego Str. 12/14, 61-704 Poznań, Poland.

出版信息

Molecules. 2023 Sep 26;28(19):6812. doi: 10.3390/molecules28196812.

Abstract

This work is the next step in studying the interplay between C-2028 (anticancer-active unsymmetrical bisacridine developed in our group) and the glutathione S-transferase/glutathione (GST/GSH) system. Here, we analyzed the concentration- and pH-dependent GSH conjugation of C-2028 in rat liver microsomes and cytosol. We also applied three recombinant human GST isoenzymes, which altered expression was found in various tumors. The formation of GSH S-conjugate of C-2028 in liver subfractions followed Michaelis-Menten kinetics. We found that C-2028 was conjugated with GSH preferentially by GSTM1-1, revealing a sigmoidal kinetic model. Using a colorimetric assay (MTT test), we initially assessed the cellular GST/GSH-dependent biotransformation of C-2028 in relation to cytotoxicity against Du-145 human prostate cancer cells in the presence or absence of the modulator of GSH biosynthesis. Pretreatment of cells with buthionine sulfoximine resulted in a cytotoxicity decrease, suggesting a possible GSH-mediated bioactivation process. Altogether, our results confirmed the importance of GSH conjugation in C-2028 metabolism, which humans must consider when planning a treatment strategy. Finally, nuclear magnetic resonance spectroscopy elucidated the structure of the GSH-derived product of C-2028. Hence, synthesizing the compound standard necessary for further advanced biological and bioanalytical investigations will be achievable.

摘要

这项工作是研究 C-2028(我们小组开发的具有抗癌活性的不对称双吖啶)与谷胱甘肽 S-转移酶/谷胱甘肽(GST/GSH)系统相互作用的下一步。在这里,我们分析了 C-2028 在大鼠肝微粒体和胞质中的浓度和 pH 依赖性谷胱甘肽结合。我们还应用了三种重组人 GST 同工酶,在各种肿瘤中发现了这些同工酶的表达改变。肝亚部分中 C-2028 的 GSH S-轭合物的形成遵循米氏动力学。我们发现 C-2028 主要通过 GSTM1-1 与 GSH 结合,呈现出一种 S 型动力学模型。使用比色测定法(MTT 试验),我们最初评估了 C-2028 在存在或不存在 GSH 生物合成调节剂的情况下,与 Du-145 人前列腺癌细胞的 GST/GSH 依赖性生物转化与细胞毒性的关系。用丁硫氨酸亚砜胺预处理细胞会导致细胞毒性降低,表明可能存在 GSH 介导的生物激活过程。总之,我们的结果证实了 GSH 结合在 C-2028 代谢中的重要性,人类在制定治疗策略时必须考虑这一点。最后,核磁共振波谱阐明了 C-2028 的 GSH 衍生产物的结构。因此,合成进一步进行高级生物学和生物分析研究所必需的化合物标准品将是可行的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa18/10574777/c378bcb5cb14/molecules-28-06812-g001.jpg

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