Department of Biochemistry, University of Utah, 15 N Medical Drive, Salt Lake City, UT 84112, USA.
Org Biomol Chem. 2019 Feb 13;17(7):1703-1708. doi: 10.1039/c8ob01212a.
The introduction of solid-phase peptide synthesis in the 1960s improved the chemical synthesis of both the A- and B-chains of insulin and insulin analogs. However, the subsequent elaboration of the synthetic peptides to generate active hormones continues to be difficult and complex due in part to the hydrophobicity of the A-chain. Over the past decade, several groups have developed different methods to enhance A-chain solubility. Two of the most popular methods are use of isoacyl dipeptides, and the attachment of an A-chain C-terminal pentalysine tag with a base-labile 4-hydroxymethylbenzoic acid linker. These methods have proven effective but can be limited in scope depending on the peptide sequence of a specific insulin. Herein we describe an auxiliary approach to enhance the solubility of insulin-based peptides by incorporating a tri-lysine tag attached to a cleavable Fmoc-Ddae-OH linker. Incorporation of this linker, or "helping hand", on the N-terminus greatly improved the solubility of chicken insulin A-chain, which is analogous to human insulin, and allowed for coupling of the insulin A- and B-chain via directed disulfide bond formation. After formation of the insulin heterodimer, the linker and tag could be easily removed using a hydrazine buffer (pH 7.5) to obtain an overall 12.6% yield based on A-chain. This strategy offers an efficient method to enhance the solubility of hydrophobic insulin-based peptides as well as other traditionally difficult peptides.
20 世纪 60 年代固相肽合成的引入改进了胰岛素和胰岛素类似物的 A 链和 B 链的化学合成。然而,由于 A 链的疏水性,随后对合成肽进行修饰以产生活性激素仍然很困难和复杂。在过去的十年中,有几个小组开发了不同的方法来提高 A 链的溶解度。两种最流行的方法是使用异酰二肽和在 A 链 C 末端连接五聚赖氨酸标签,并用碱基不稳定的 4-羟甲基苯甲酸连接子。这些方法已被证明是有效的,但可能会受到特定胰岛素肽序列的限制。本文描述了一种通过引入连接到可切割的 Fmoc-Ddae-OH 连接子的三赖氨酸标签来提高基于胰岛素的肽溶解度的辅助方法。该连接子或“助手”在 N 端的引入极大地提高了类似于人胰岛素的鸡胰岛素 A 链的溶解度,并允许通过定向二硫键形成连接胰岛素 A 链和 B 链。形成胰岛素杂二聚体后,使用肼缓冲液(pH 7.5)很容易去除连接子和标签,以获得基于 A 链的 12.6%的总产率。该策略提供了一种有效方法来提高疏水性基于胰岛素的肽以及其他传统上困难的肽的溶解度。