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使用仿生天然化学连接法进行硫酯脱保护。

Thioester deprotection using a biomimetic NCL approach.

作者信息

Villamil Valentina, Saiz Cecilia, Mahler Graciela

机构信息

Laboratorio de Química Farmacéutica (DQO), Facultad de Química, Universidad de la República, Montevideo, Uruguay.

Graduate Program in Chemistry, Facultad de Química, Universidad de la República (UdelaR), Montevideo, Uruguay.

出版信息

Front Chem. 2022 Aug 22;10:934376. doi: 10.3389/fchem.2022.934376. eCollection 2022.

Abstract

The reversibility of the thiol-thioester linkage has been broadly employed in many fields of biochemistry (lipid synthesis) and chemistry (dynamic combinatorial chemistry and material science). When the transthioesterification is followed by a S-to-N acyl transfer to give an amide bond, it is called Native Chemical Ligation (NCL), a high-yield chemoselective process used for peptide synthesis. Recently, we described thioglycolic acid (TGA) as a useful reagent for thioester deprotection both in solution and anchored to a solid-support under mild conditions. Inspired by NCL, in this work, we extended this approach and explored the use of 2-aminothiols for the deprotection of thiols bearing an acyl group. The best results were obtained using cysteamine or L-cysteine in an aqueous buffer pH 8 at room temperature for 30 min. The described approach was useful for S-acetyl, S-butyryl, and S-benzoyl heterocycles deprotection with yields up to 84%. Employing this methodology, we prepared six new analogs of mercaptomethyl bisthiazolidine , a useful inhibitor of a wide-range of Metallo-β-Lactamases (MBLs). Compared with the previous methodologies (TGA polymer supported and TGA in solution), the biomimetic deprotection herein described presents better performance with higher yields, shorter reaction times, less time-consuming operations, easier setup, and lower costs.

摘要

硫醇 - 硫酯键的可逆性已在生物化学(脂质合成)和化学(动态组合化学与材料科学)的许多领域中广泛应用。当硫酯交换反应之后进行从硫到氮的酰基转移以形成酰胺键时,这一过程被称为天然化学连接(NCL),是一种用于肽合成的高产率化学选择性方法。最近,我们描述了巯基乙酸(TGA)是一种在温和条件下用于溶液中和固定在固体载体上的硫酯脱保护的有用试剂。受NCL启发,在本工作中,我们扩展了这种方法,并探索了使用2 - 氨基硫醇对带有酰基的硫醇进行脱保护。在室温下于pH 8的水性缓冲液中使用半胱胺或L - 半胱氨酸30分钟可获得最佳结果。所描述的方法对于S - 乙酰基、S - 丁酰基和S - 苯甲酰基杂环的脱保护很有用,产率高达84%。采用这种方法,我们制备了六种新的巯基甲基双噻唑烷类似物,它是一种广泛的金属β - 内酰胺酶(MBLs)的有效抑制剂。与先前的方法(TGA聚合物负载和溶液中的TGA)相比,本文所述的仿生脱保护具有更好的性能,产率更高、反应时间更短、操作耗时更少、设置更容易且成本更低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0901/9441695/26113a3019bf/fchem-10-934376-g001.jpg

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