Fan Ruxia, Hakanpää Johanna, Elfving Karoliina, Taberman Helena, Linder Markus B, Aranko A Sesilja
Department of Bioproducts and Biosystems, School of Chemical Engineering, Aalto University, P.O. Box 16100, 02150, Espoo, Finland.
Deutsches Elektronen Synchrotron (DESY), Photon Science, Notkestrasse 85, 22607, Hamburg, Germany.
Angew Chem Int Ed Engl. 2023 Mar 6;62(11):e202216371. doi: 10.1002/anie.202216371. Epub 2023 Feb 7.
A type of protein/peptide pair known as Catcher/Tag pair spontaneously forms an intermolecular isopeptide bond which can be applied for biomolecular click reactions. Covalent protein conjugation using Catcher/Tag pairs has turned out to be a valuable tool in biotechnology and biomedicines, but it is essential to increase the current toolbox of orthogonal Catcher/Tag pairs to expand the range of applications further, for example, for controlled multiple-fragment ligation. We report here the engineering of novel Catcher/Tag pairs for protein ligation, aided by a crystal structure of a minimal CnaB domain from Lactobacillus plantarum. We show that a newly engineered pair, called SilkCatcher/Tag enables efficient pH-inducible protein ligation in addition to being compatible with the widely used SpyCatcher/Tag pair. Finally, we demonstrate the use of the SilkCatcher/Tag pair in the production of native-sized highly repetitive spider-silk-like proteins with >90 % purity, which is not possible by traditional recombinant production methods.
一种被称为“捕获器/标签”对的蛋白质/肽对能自发形成分子间异肽键,可用于生物分子点击反应。利用“捕获器/标签”对进行共价蛋白质缀合已成为生物技术和生物医学中的一种有价值的工具,但有必要增加目前的正交“捕获器/标签”对工具箱,以进一步扩大应用范围,例如用于可控的多片段连接。我们在此报告借助植物乳杆菌最小CnaB结构域的晶体结构对用于蛋白质连接的新型“捕获器/标签”对进行的工程改造。我们表明,一种新设计的对,称为“丝捕获器/标签”,除了与广泛使用的“间谍捕获器/标签”对兼容外,还能实现高效的pH诱导蛋白质连接。最后,我们展示了“丝捕获器/标签”对在生产纯度>90%的天然大小的高度重复蜘蛛丝样蛋白中的应用,这是传统重组生产方法无法实现的。