异二聚体间链双内酰胺连接肽的全化学合成:在人胰岛素样肽3类似物中的应用。

International Journal of Peptides Pub Date : 2013-01-01 Epub Date: 2013-10-28 DOI:10.1155/2013/504260
John Karas, Fazel Shabanpoor, Mohammed Akhter Hossain, James Gardiner, Frances Separovic, John D Wade, Denis B Scanlon
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引用次数: 12

摘要

不可还原的胱氨酸同位体是重要的肽设计元素,因为它们可以维持肽的接近天然的三级构象,同时延长生物分子的体外和体内半衰期。这些胱氨酸模拟物的例子包括敌敌畏、二硒醚、硫醚、三唑和内酰胺桥。每一种都有其独特的物理化学性质,影响到生成的肽构象。每一种都需要通过化学肽合成方案形成特定的条件。虽然在一个肽内制备含有两个内酰胺键的肽在技术上是可能的,并且有其他报道,但迄今为止还没有化学合成由两个内酰胺键连接的异二聚体肽的报道。为了检验这种组装的可行性,明智地使用胺和酸保护基团的互补组合以及非片段基的全逐步固相肽合成,成功地制备了模型肽的类似物胰岛素样肽3 (INSL3),其中两个链间二硫键都被内酰胺键取代。还制备了含有单二硫化物取代间链内酰胺键的类似物。两种INSL3类似物都保留了显著的同源RXFP2受体结合亲和力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Total chemical synthesis of a heterodimeric interchain bis-lactam-linked Peptide: application to an analogue of human insulin-like Peptide 3.

Total chemical synthesis of a heterodimeric interchain bis-lactam-linked Peptide: application to an analogue of human insulin-like Peptide 3.

Total chemical synthesis of a heterodimeric interchain bis-lactam-linked Peptide: application to an analogue of human insulin-like Peptide 3.

Total chemical synthesis of a heterodimeric interchain bis-lactam-linked Peptide: application to an analogue of human insulin-like Peptide 3.

Nonreducible cystine isosteres represent important peptide design elements in that they can maintain a near-native tertiary conformation of the peptide while simultaneously extending the in vitro and in vivo half-life of the biomolecule. Examples of these cystine mimics include dicarba, diselenide, thioether, triazole, and lactam bridges. Each has unique physicochemical properties that impact upon the resulting peptide conformation. Each also requires specific conditions for its formation via chemical peptide synthesis protocols. While the preparation of peptides containing two lactam bonds within a peptide is technically possible and reported by others, to date there has been no report of the chemical synthesis of a heterodimeric peptide linked by two lactam bonds. To examine the feasibility of such an assembly, judicious use of a complementary combination of amine and acid protecting groups together with nonfragment-based, total stepwise solid phase peptide synthesis led to the successful preparation of an analogue of the model peptide, insulin-like peptide 3 (INSL3), in which both of the interchain disulfide bonds were replaced with a lactam bond. An analogue containing a single disulfide-substituted interchain lactam bond was also prepared. Both INSL3 analogues retained significant cognate RXFP2 receptor binding affinity.

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