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Tyrosinase-Mediated Oxidative Coupling of Tyrosine Tags on Peptides and Proteins

机译:酪氨酸酶介导的酪氨酸标签在肽和蛋白质上的氧化偶联。

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Oxidative coupling (OC) through o-quinone intermediates has been established as an efficient and site-selective way to modify protein N-termini and the unnatural amino acid p-aminophenylalanine (paF). Recently, we reported that the tyrosinase-mediated oxidation of phenol-tagged cargo molecules is a particularly convenient method of generating o-quinones in situ. The coupling partners can be easily prepared and stored, the reaction takes place under mild conditions (phosphate buffer, pH 6.5, 4 to 23 ℃), and dissolved oxygen is the only oxidant required. Here, we show an important extension of this chemistry for the activation of tyrosine residues that project into solution from the N or C-termini of peptide and protein substrates. Generating the o-quinone electrophiles from tyrosine allows greater flexibility in choosing the nucleophilic coupling partner and expands the scope of the reaction to include C-terminal positions. We also introduce a new bacterial tyrosinase enzyme that shows improved activation for some tyrosine substrates. The efficacy of several secondary amines and aniline derivatives was evaluated in the coupling reactions, providing important information for coupling partner design. This strategy was used to modify the C-termini of an antibody scFv construct and of Protein L, a human IgG kappa light chain binding protein. The use of the modified proteins as immunolabeling agents was also demonstrated.
机译:已经建立了通过邻醌中间体的氧化偶联(OC)作为修饰蛋白N-末端和非天然氨基酸对氨基苯丙氨酸(paF)的有效且位点选择性的方法。最近,我们报道酪氨酸酶介导的苯酚标记的货物分子的氧化是一种特别方便的原位生成邻苯二酚的方法。偶联伙伴易于制备和储存,反应在温和的条件下(磷酸盐缓冲液,pH 6.5,4至23℃)进行,而溶解氧是唯一需要的氧化剂。在这里,我们显示了这种化学的重要扩展,用于激活酪氨酸残基的活化,这些残基从肽和蛋白质底物的N或C末端投射到溶液中。由酪氨酸生成邻醌亲电子试剂在选择亲核偶联配偶体方面具有更大的灵活性,并将反应范围扩大到包括C端位置。我们还引入了一种新的细菌酪氨酸酶,该酶对某些酪氨酸底物的活化作用有所改善。在偶联反应中评估了几种仲胺和苯胺衍生物的功效,为偶联伙伴的设计提供了重要信息。该策略用于修饰抗体scFv构建体和蛋白L(人IgGκ轻链结合蛋白)的C末端。还证明了修饰的蛋白质作为免疫标记剂的用途。

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