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首页> 外文期刊>Angewandte Chemie >9-Fluorenylmethoxycarbonyl-Based Solid-Phase Synthesis of Peptide α-Thioesters
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9-Fluorenylmethoxycarbonyl-Based Solid-Phase Synthesis of Peptide α-Thioesters

机译:α-硫酯的9-芴基甲氧基羰基固相合成

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摘要

Preptide thioesters play a key role in convergent protein synthesis strategies such as native chemical ligation, traceless Staudinger ligation, and Ag~+-mediated thioester ligation. The Boc-based solid-phase synthesis provides a very reliable access to peptide thioesters. However, the acid lability of many peptide modifications and the requirements of most parallel peptide synthesizers call for the milder Fmoc-based solid-phase synthesis. The Fmoc-based synthesis of peptide thioesters is more cumbersome and typically proceeds with lower yields than the synthesis of peptide acids and peptide amides. The success of native chemical ligation and related technologies has sparked intensive research effort devoted to the development of new methods. The recent progress in this rapidly expanding field is reviewed.
机译:肽硫酯在聚合蛋白合成策略(例如天然化学连接,无痕Staudinger连接和Ag〜+介导的硫酯连接)中起关键作用。基于Boc的固相合成为肽硫酯提供了非常可靠的途径。然而,许多肽修饰的酸不稳定性和大多数平行肽合成仪的要求都要求进行基于Fmoc的较温和的固相合成。与肽酸和肽酰胺的合成相比,基于Fmoc的肽硫酯的合成更麻烦,并且通常以较低的产率进行。天然化学连接技术和相关技术的成功引发了致力于新方法开发的大量研究工作。回顾了这个快速扩展领域的最新进展。

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