Fischer Peter M, Zheleva Daniella I
Cyclacel Limited, Dundee, Scotland, UK.
J Pept Sci. 2002 Sep;8(9):529-42. doi: 10.1002/psc.413.
Stepwise synthetic assembly of polypeptide chains reversibly linked to polyethylene glycol represents a hybrid between traditional solution and solid-phase chemistries and combines the inherent advantages of both approaches. The technical simplicity and scalability of the liquid-phase peptide synthesis method renders it particularly attractive for multiple parallel syntheses, combinatorial approaches and the large-scale preparation of peptides. The versatile protection strategy based on the N alpha-fluorenylmethoxycarbonyl group commonly used in solid-phase peptide synthesis was adapted to the liquid-phase approach. Fluoride ions were used rather than the conventional organic base piperidine for the repetitive amino-deprotection step. Using a range of acid- and base-labile linkers between the polymer and the peptide, it was shown that free and fully side-chain protected peptides can be obtained using our version of the liquid-phase peptide synthesis method. Protocols for simultaneous multiple syntheses requiring a minimum of equipment are presented and the use of polyethylene glycol-bound peptides in biochemical binding and functional assay systems is demonstrated.
与聚乙二醇可逆连接的多肽链的逐步合成组装代表了传统溶液化学和固相化学之间的一种结合,并结合了两种方法的固有优势。液相肽合成方法的技术简单性和可扩展性使其对于多重平行合成、组合方法以及肽的大规模制备特别具有吸引力。基于固相肽合成中常用的Nα-芴甲氧羰基基团的通用保护策略被应用于液相方法。在重复的氨基脱保护步骤中使用氟离子而非传统的有机碱哌啶。通过在聚合物和肽之间使用一系列对酸和碱不稳定的连接子,结果表明使用我们版本的液相肽合成方法可以获得游离的和完全侧链保护的肽。本文介绍了所需设备最少的同时多重合成方案,并展示了聚乙二醇结合肽在生化结合和功能测定系统中的应用。