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立体缺电子寡聚甘氨酸取代物通过组合的 Sortase A 转肽和点击化学促进多价和双功能纳米抗体的合成。

Steric-Deficient Oligoglycine Surrogates Facilitate Multivalent and Bifunctional Nanobody Synthesis via Combined Sortase A Transpeptidation and Click Chemistry.

机构信息

Department of Biochemistry and Molecular Biology, Biomedicine Discovery Institute, Monash University, Clayton 3800, Victoria, Australia.

Monash Proteomics and Metabolomics Facility, Monash University, Clayton 3800, Victoria, Australia.

出版信息

Bioconjug Chem. 2023 Sep 20;34(9):1667-1678. doi: 10.1021/acs.bioconjchem.3c00319. Epub 2023 Aug 3.

Abstract

Conferring multifunctional properties to proteins via enzymatic approaches has greatly facilitated recent progress in protein nanotechnology. In this regard, sortase (Srt) A transpeptidation has facilitated many of these developments due to its exceptional specificity, mild reaction conditions, and complementation with other bioorthogonal techniques, such as click chemistry. In most of these developments, Srt A is used to seamlessly tether oligoglycine-containing molecules to a protein of interest that is equipped with the enzyme's recognition sequence, LPXTG. However, the dependence on oligoglycine attacking nucleophiles and the associated cost of certain derivatives (e.g., cyclooctyne) limit the utility of this approach to lab-scale applications only. Thus, the quest to identify appropriate alternatives and understand their effectiveness remains an important area of research. This study identifies that steric and nucleophilicity-associated effects influence Srt A transpeptidation when two oligoglycine surrogates were examined. The approach was further used in complementation with click chemistry to synthesize bivalent and bifunctional nanobody conjugates for application in epithelial growth factor receptor targeting. The overall technique and tools developed here may facilitate the advancement of future nanotechnologies.

摘要

通过酶法将多种功能赋予蛋白质极大地促进了蛋白质纳米技术的最新进展。在这方面,由于其出色的特异性、温和的反应条件以及与其他生物正交技术(如点击化学)的互补性,天冬酰胺酰基内肽酶 A(Srt)A 转肽作用促进了许多这样的发展。在这些发展中的大多数中,Srt A 用于将含有寡甘氨酸的分子无缝地连接到带有酶识别序列 LPXTG 的感兴趣的蛋白质上。然而,对寡甘氨酸亲核进攻试剂的依赖性以及某些衍生物(例如环辛炔)的相关成本限制了这种方法仅在实验室规模应用中的实用性。因此,寻找合适的替代品并了解它们的有效性仍然是一个重要的研究领域。本研究确定了当两种寡甘氨酸替代物被检测到时,空间位阻和亲核性相关效应会影响 Srt A 转肽作用。该方法进一步与点击化学互补用于合成二价和双功能纳米抗体缀合物,以应用于表皮生长因子受体靶向。这里开发的整体技术和工具可能会促进未来纳米技术的发展。

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