Hossain Mohammed Akhter, Belgi Alessia, Lin Feng, Zhang Suode, Shabanpoor Fazel, Chan Linda, Belyea Chris, Truong Hue-Trung, Blair Amy R, Andrikopoulos Sof, Tregear Geoffrey W, Wade John D
Howard Florey Institute, Department of Biochemistry and Molecular Biology, School of Chemistry, Department of Medicine (AH/NH), The University of Melbourne, Victoria 3010, Australia.
Bioconjug Chem. 2009 Jul;20(7):1390-6. doi: 10.1021/bc900181a.
Solid-phase peptide synthesis has been refined to a stage where efficient preparation of long and complex peptides is now achievable. However, the postsynthesis handling of poorly soluble peptides often remains a significant hindrance to their purification and further use. Several synthetic schemes have been developed for the preparation of such peptides containing modifications to aid their solubility. However, these require the use of complex chemistry or yield non-native sequences. We describe a simple approach based on the use of penta-lysine "tags" that are linked to the C-terminus of the peptide of interest via a base-labile linker. After ready purification of the now freely solubilized peptide, the "tag" is removed by simple, brief base treatment giving the native sequence in much higher overall yield. The applicability of the method was demonstrated by the novel preparation of insulin glargine via solid-phase synthesis of each of the two chains--including the notoriously poorly soluble A-chain--followed by their combination in solution via regioselective disulfide bond formation. At the conclusion of the chain combination, the solubilizing peptide tag was removed from the A-chain to provide synthetic human glargine in nearly 10% overall yield. This approach should facilitate the development of new insulin analogues as well as be widely applicable to the improved purification and acquisition of otherwise poorly soluble synthetic peptides.
固相肽合成已发展到一个阶段,现在能够高效制备长而复杂的肽。然而,难溶性肽的合成后处理常常仍是其纯化及进一步应用的重大障碍。已经开发了几种合成方案来制备此类含有有助于其溶解性的修饰的肽。然而,这些方案需要使用复杂的化学方法或产生非天然序列。我们描述了一种基于使用五聚赖氨酸“标签”的简单方法,该标签通过对碱不稳定的连接子连接到目标肽的C末端。在现在可自由溶解的肽易于纯化后,通过简单、短暂的碱处理去除“标签”,以更高的总产率得到天然序列。通过分别固相合成两条链(包括众所周知难溶的A链),然后通过区域选择性二硫键形成在溶液中将它们组合,以新方法制备甘精胰岛素,证明了该方法的适用性。在链组合结束时,从A链上除去增溶肽标签,以近10%的总产率提供合成人甘精胰岛素。这种方法应有助于新型胰岛素类似物的开发,并广泛适用于改善其他难溶合成肽的纯化和获得。