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具有可调苯酚酯的肽和蛋白质的选择性 N-端酰化。

Selective N-Terminal Acylation of Peptides and Proteins with Tunable Phenol Esters.

机构信息

Global Research Technologies, Novo Nordisk Research Park, 2760 Måløv, Denmark.

Carbon Dioxide Activation Center (CADIAC), Interdisciplinary Nanoscience Center, Department of Chemistry, Aarhus University, 8000 Aarhus C, Denmark.

出版信息

Bioconjug Chem. 2022 Apr 20;33(4):625-633. doi: 10.1021/acs.bioconjchem.2c00045. Epub 2022 Mar 23.

DOI:10.1021/acs.bioconjchem.2c00045
PMID:35320668
Abstract

Selective modification of peptides and proteins is of foremost importance for the development of biopharmaceuticals and exploring biochemical pathways, as well as other applications. Here, we present a study on the development of a general and easily applicable selective method for -terminal acylation of biomolecules, applying a new type of phenol esters. Key to the success was the development of highly tunable phenol activators bearing in the ortho-position, sulfonic acid or sulfonamide, acting as a steric shield for hydrolysis, and electron-withdrawing groups in the other ortho- and para-position for controlling the reactivity of the activated phenol esters. A library of heptapeptides, testing all 20 natural amino acids positioned at the -terminal, were acylated in a selective manner at the -terminus. The majority showed high conversion and excellent -selectivity. Several biologically relevant biomolecules, including DesB30 insulin and human growth hormone, could also be modified at the -terminal in a highly selective way, exemplified by either a fluorophore or a fatty acid sidechain. Finally, taking advantage of the possibility to accurately adjust the reactivity of the phenol esters, we present a potential strategy for the construction of dual active biopharmaceuticals through the employment of a bifunctional acylation linker and demonstrate its use in the creation of a GLP-1 insulin analogue, coupled through the lysine residue of GLP-1 and the -terminal Phe amine of DesB30 insulin.

摘要

选择性修饰肽和蛋白质对于生物制药的开发、探索生化途径以及其他应用至关重要。在这里,我们研究了一种通用且易于应用的生物分子 - 端酰化选择性方法的开发,该方法应用了新型酚酯。成功的关键是开发了高度可调的酚类激活剂,邻位带有磺酸或磺酰胺基团,可作为水解的空间位阻基团,而另一个邻位和对位则带有吸电子基团,用于控制活化酚酯的反应性。我们对包含 20 种天然氨基酸的七肽库进行了测试,这些氨基酸都位于 - 端,可在 - 端选择性地酰化。大多数情况下,转化率高,具有优异的 - 选择性。包括 DesB30 胰岛素和人生长激素在内的几种具有生物学意义的生物分子也可以通过高度选择性的方式在 - 端进行修饰,例如通过荧光团或脂肪酸侧链。最后,我们利用酚酯反应性的精确可调性,提出了一种通过使用双功能酰化连接子构建双活性生物制药的潜在策略,并展示了其在 GLP-1 胰岛素类似物构建中的应用,该类似物通过 GLP-1 的赖氨酸残基和 DesB30 胰岛素的 - 端 Phe 胺连接。

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