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三氟甲基化环状 ADP-核糖类似物:8-三氟甲基-N(1)-[(5''-O-膦酸乙酯基)甲基]-5'-O-膦酰基肌苷-5',5''-环焦磷酸(8-CF(3)-cIDPRE)的合成及其在 T 细胞中的钙释放活性。

Trifluoromethylated cyclic-ADP-ribose mimic: synthesis of 8-trifluoromethyl-N(1)-[(5''-O-phosphorylethoxy)methyl]-5'-O-phosphorylinosine-5',5''-cyclic pyrophosphate (8-CF(3)-cIDPRE) and its calcium release activity in T cells.

机构信息

State Key Laboratory of Natural and Biomimetic Drugs, School of Pharmaceutical Sciences, Peking University, Beijing 100191, China.

出版信息

Org Biomol Chem. 2010 Oct 21;8(20):4705-15. doi: 10.1039/c0ob00090f. Epub 2010 Aug 25.

Abstract

A convenient trifluoromethylation method was firstly applied to the synthesis of 8- CF(3)-purine nucleosides. On the basis of this method, new protection and deprotection strategies were developed for the successful synthesis of the trifluoromethylated cyclic-ADP-ribose mimic, 8-CF(3)-cIDPRE 1. Using intact, fura-2-loaded Jurkat T cells compound 1 and 2',3'-O-isopropylidene 8-CF(3)-cIDPRE 14 were characterized as membrane-permeant cADPR agonists. Contrary to the 8-substituted cADPR analogues that mainly act as antagonists of cADPR in cells, 8-substituted cIDPRE derivatives were shown to be Ca(2+) mobilizing agonists. Here we report that even compound 1, the 8-substituted cIDPRE with the strong electron withdrawing CF(3) group, behaves as an agonist in T cells. Interestingly, also the partially protected 2',3'-O-isopropylidene 8-CF(3)-cIDPRE activated Ca(2+) signaling indicating only a minor role for the hydroxyl groups of the southern ribose of cADPR for its biological activity. To our knowledge 8-CF(3)-cIDPRE 1 is the first reported fluoro substituted cADPR mimic and 8-CF(3)-cIDPRE 1 and compound 14 are promising molecular probes for elucidating the mode of action of cADPR.

摘要

首次应用方便的三氟甲基化方法合成 8-CF3-嘌呤核苷。在此方法的基础上,开发了新的保护和脱保护策略,成功合成了三氟甲基化的环状 ADP-核糖类似物 8-CF3-cIDPRE 1。使用完整的、装载有 fura-2 的 Jurkat T 细胞,化合物 1 和 2',3'-O-异亚丙基 8-CF3-cIDPRE 14 被表征为膜通透性 cADPR 激动剂。与主要在细胞中作为 cADPR 拮抗剂的 8-取代 cADPR 类似物相反,8-取代的 cIDPRE 衍生物被证明是 Ca2+动员激动剂。在此,我们报告即使是 8-取代的 cIDPRE 化合物 1,具有强吸电子 CF3 基团,在 T 细胞中也表现为激动剂。有趣的是,部分保护的 2',3'-O-异亚丙基 8-CF3-cIDPRE 也激活了 Ca2+信号转导,这表明 cADPR 中南部核糖的羟基对其生物学活性的作用较小。据我们所知,8-CF3-cIDPRE 1 是第一个报道的氟取代的 cADPR 类似物,8-CF3-cIDPRE 1 和化合物 14 是阐明 cADPR 作用模式的有前途的分子探针。

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