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脱卤和嘌呤核苷磷酸化酶:混合物 2',3'-脱水肌苷如何阻碍 2-氟虫草素的合成。

Radical Dehalogenation and Purine Nucleoside Phosphorylase : How Does an Admixture of 2',3'-Anhydroinosine Hinder 2-fluoro-cordycepin Synthesis.

机构信息

Shemyakin and Ovchinnikov Institute of Bioorganic Chemistry RAS, Miklukho-Maklaya 16/10, 117997 GSP, B-437 Moscow, Russia.

Institute of Bioorganic Chemistry, National Academy of Sciences, Acad. Kuprevicha 5/2, 220141 Minsk, Belarus.

出版信息

Biomolecules. 2021 Apr 7;11(4):539. doi: 10.3390/biom11040539.

Abstract

During the preparative synthesis of 2-fluorocordycepin from 2-fluoroadenosine and 3'-deoxyinosine catalyzed by purine nucleoside phosphorylase, a slowdown of the reaction and decrease of yield down to 5% were encountered. An unknown nucleoside was found in the reaction mixture and its structure was established. This nucleoside is formed from the admixture of 2',3'-anhydroinosine, a byproduct in the preparation of 3-'deoxyinosine. Moreover, 2',3'-anhydroinosine forms during radical dehalogenation of 9-(2',5'-di--acetyl-3'-bromo- -3'-deoxyxylofuranosyl)hypoxanthine, a precursor of 3'-deoxyinosine in chemical synthesis. The products of 2',3'-anhydroinosine hydrolysis inhibit the formation of 1-phospho-3-deoxyribose during the synthesis of 2-fluorocordycepin. The progress of 2',3'-anhydroinosine hydrolysis was investigated. The reactions were performed in DO instead of HO; this allowed accumulating intermediate substances in sufficient quantities. Two intermediates were isolated and their structures were confirmed by mass and NMR spectroscopy. A mechanism of 2',3'-anhydroinosine hydrolysis in DO is fully determined for the first time.

摘要

在嘌呤核苷磷酸化酶催化下,由 2-氟腺苷和 3'-脱氧肌苷制备 2-氟虫草素时,遇到了反应速度减慢和产率下降至 5%的问题。在反应混合物中发现了一种未知核苷,其结构被确定。该核苷是由 2',3'-脱水肌苷形成的,2',3'-脱水肌苷是制备 3'-脱氧肌苷的副产物。此外,在 9-(2',5'-二乙酰基-3'-溴-3'-脱氧呋喃基)次黄嘌呤的自由基脱卤反应中也形成了 2',3'-脱水肌苷,9-(2',5'-二乙酰基-3'-溴-3'-脱氧呋喃基)次黄嘌呤是化学合成 3'-脱氧肌苷的前体。2',3'-脱水肌苷水解产物抑制了 2-氟虫草素合成过程中 1-磷酸-3-脱氧核糖的形成。研究了 2',3'-脱水肌苷水解的进展。反应在 DO 中而不是 HO 中进行;这允许在足够的数量上积累中间物质。分离出两种中间体,并通过质谱和 NMR 光谱确认了它们的结构。首次完全确定了 DO 中 2',3'-脱水肌苷水解的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f053/8067715/5e136eebcfce/biomolecules-11-00539-g001.jpg

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