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A straightforward method for automated Fmoc-based synthesis of bio-inspired peptide crypto-thioesters

机译:一种基于Fmoc的生物启发肽隐硫酯自动化合成的简单方法

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Despite recent advances, the direct Fmoc-based solid phase synthesis of peptide alpha-thioesters for the convergent synthesis of proteins via native chemical ligation (NCL) remains a challenge in the field. We herein report a simple and general methodology, enabling access to peptide thioester surrogates. A novel C-terminal N-(2-hydroxybenzyl) cysteine thioesterification device based on an amide-to-thioester rearrangement was developed, and the resulting peptide crypto-thioesters can be directly used in NCL reactions with fast N -> S shift kinetics at neutral pH. These fast kinetics arise from our bio-inspired design, via intein-like intramolecular catalysis. Due to a well-positioned phenol moiety, an impressive >50 fold increase in the kinetic rate is observed compared to an O-methylated derivative. Importantly, the synthesis of this new device can be fully automated using inexpensive commercially available materials and does not require any post-synthetic steps prior to NCL. We successfully applied this new method to the synthesis of two long naturally-occurring cysteine-rich peptide sequences.
机译:尽管有最近的进展,用于通过天然化学连接(NCL)收敛合成蛋白质的肽α-硫酯的直接基于Fmoc的固相合成仍然是该领域的挑战。我们在此报告了一种简单而通用的方法,可用于获得硫代肽替代物。开发了一种基于酰胺到硫酯重排的新型C端N-(2-羟基苄基)半胱氨酸硫酯化装置,所得肽隐硫代酯可直接用于NCL反应中,具有快速的N-> S转变动力学中性pH。这些快速的动力学源自我们的生物启发设计,通过类似intein的分子内催化作用。由于位置适当的酚部分,与O-甲基化衍生物相比,动力学速率显着增加了> 50倍。重要的是,这种新设备的合成可以使用便宜的市售材料实现完全自动化,并且在NCL之前不需要任何合成后步骤。我们成功地将此新方法应用于合成两个长的天然存在的富含半胱氨酸的肽序列。

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