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一种针对天然肽和蛋白质的位点选择性功能化的化学酶策略。

A chemoenzymatic strategy for site-selective functionalization of native peptides and proteins.

机构信息

Process Research and Development, Merck & Co., Inc., Rahway, NJ 07065, USA.

Codexis Inc., 200 Penobscot Drive, Redwood City, CA 94063, USA.

出版信息

Science. 2022 Jun 17;376(6599):1321-1327. doi: 10.1126/science.abn2009. Epub 2022 Jun 16.

Abstract

The emergence of new therapeutic modalities requires complementary tools for their efficient syntheses. Availability of methodologies for site-selective modification of biomolecules remains a long-standing challenge, given the inherent complexity and the presence of repeating residues that bear functional groups with similar reactivity profiles. We describe a bioconjugation strategy for modification of native peptides relying on high site selectivity conveyed by enzymes. We engineered penicillin G acylases to distinguish among free amino moieties of insulin (two at amino termini and an internal lysine) and manipulate cleavable phenylacetamide groups in a programmable manner to form protected insulin derivatives. This enables selective and specific chemical ligation to synthesize homogeneous bioconjugates, improving yield and purity compared to the existing methods, and generally opens avenues in the functionalization of native proteins to access biological probes or drugs.

摘要

新治疗方式的出现需要相应的工具来辅助其高效合成。由于生物分子结构复杂且存在重复的残基,这些残基上的功能基团具有相似的反应活性,因此实现生物分子的位点选择性修饰仍然是一个长期存在的挑战。我们描述了一种基于酶的高度位点选择性的生物共轭策略,用于修饰天然肽。我们对青霉素 G 酰化酶进行了工程改造,以区分胰岛素的游离氨基部分(氨基末端的两个和内部的赖氨酸),并以可编程的方式操作可裂解的苯乙酰胺基团,从而形成保护的胰岛素衍生物。这使得可以进行选择性和特异性的化学连接,以合成均一的生物缀合物,与现有方法相比,提高了产率和纯度,并且通常为天然蛋白质的功能化开辟了途径,以获得生物探针或药物。

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