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Scope Limitations of Fmoc Chemistry SPPS-Based Approaches to the Total Synthesis of Insulin Lispro via Ester Insulin

机译:基于Fmoc化学SPPS的酯类胰岛素全合成赖脯胰岛素的方法的范围和局限性

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摘要

We have systematically explored three approaches based on Fmoc chemistry SPPS for the total chemical synthesis of the key depsipeptide intermediate for the efficient total chemical synthesis of insulin. The approaches used were: stepwise Fmoc chemistry SPPS; the ‘hybrid method’, in which maximally-protected peptide segments made by Fmoc chemistry SPPS are condensed in solution; and, native chemical ligation using peptide-thioester segments generated by Fmoc chemistry SPPS. A key building block in all three approaches was a Glu[Oβ(Thr)] ester-linked dipeptide equipped with a set of orthogonal protecting groups compatible with Fmoc chemistry SPPS. The most effective method for the preparation of the 51 residue ester-linked polypeptide chain of ester insulin was the use of unprotected peptide-thioester segments, prepared from peptide-hydrazides synthesized by Fmoc chemistry SPPS, and condensed by native chemical ligation. High resolution X-ray crystallography confirmed the disulfide pairings and three-dimensional structure of synthetic insulin lispro prepared from ester insulin lispro by this route. Further optimization of these pilot studies should yield an effective total chemical synthesis of insulin lispro (Humalog) based on peptide synthesis by Fmoc chemistry SPPS.
机译:我们已经系统地探索了基于Fmoc化学SPPS的三种方法,以进行关键的二肽中间体的总化学合成,从而实现胰岛素的有效总化学合成。使用的方法是:逐步Fmoc化学SPPS; “混合方法”,其中将Fmoc Chemical SPPS生产的受最大保护的肽段在溶液中浓缩;使用Fmoc化学SPPS生成的肽硫酯片段进行天然化学连接。所有这三种方法的关键组成部分是Glu [Oβ(Thr)]酯连接的二肽,其配备了一组与Fmoc化学SPPS兼容的正交保护基。制备酯胰岛素的51个残基的酯连接的多肽链的最有效方法是使用未保护的肽-硫酯片段,该片段由Fmoc化学SPPS合成的肽酰肼制备,并通过天然化学连接缩合。高分辨率X射线晶体学证实了通过该途径由酯赖脯胰岛素制备的赖脯胰岛素合成胰岛素的二硫键配对和三维结构。基于Fmoc化学SPPS的肽合成,对这些先导研究的进一步优化应可产生赖脯胰岛素(Humalog)的有效总化学合成。

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