Depienne Sébastien, Alvarez-Dorta Dimitri, Croyal Mikael, Temgoua Ranil C T, Charlier Cathy, Deniaud David, Mével Mathieu, Boujtita Mohammed, Gouin Sébastien G
Université de Nantes, CNRS, CEISAM UMR 6230 F-44000 Nantes France
Université de Nantes, CNRS, INSERM, L'institut du Thorax F-44000 Nantes France.
Chem Sci. 2021 Nov 10;12(46):15374-15381. doi: 10.1039/d1sc04809k. eCollection 2021 Dec 1.
New methods for chemo-selective modifications of peptides and native proteins are important in chemical biology and for the development of therapeutic conjugates. Less abundant and uncharged amino-acid residues are interesting targets to form less heterogeneous conjugates and preserve biological functions. Phenylurazole (PhUr), -methylphenylurazole (NMePhUr) and -methylluminol (NMeLum) derivatives were described as tyrosine (Y) anchors after chemical or enzymatic oxidations. Recently, we developed the first electrochemical Y-bioconjugation method coined eY-click to activate PhUr in biocompatible media. In this work, we assessed the limitations, benefits and relative efficiencies of eY-click conjugations performed with a set of PhUr, NMePhUr and NMeLum derivatives. Results evidenced a high efficiency of NMeLum that showed a complete Y-chemoselectivity on polypeptides and biologically relevant proteins after soft electrochemical activation. Side reactions on nucleophilic or heteroaromatic amino-acids such as lysine or tryptophan were never observed during mass spectrometry analysis. Myoglobine, bovine serum albumin, a plant mannosidase, glucose oxidase and the therapeutically relevant antibody trastuzumab were efficiently labelled with a fluorescent probe in a two-step approach combining eY-click and strain-promoted azide-alkyne cyclization (SPAAC). The proteins conserved their structural integrity as observed by circular dichroism and the trastuzumab conjugate showed a similar binding affinity for the natural HER2 ligand as shown by bio-layer interferometry. Compared to our previously described protocol with PhUr, eY-click with NMeLum species showed faster reaction kinetics, higher (complete) Y-chemoselectivity and reactivity, and offers the interesting possibility of the double tagging of solvent-exposed Y.
肽和天然蛋白质的化学选择性修饰新方法在化学生物学以及治疗性偶联物的开发中具有重要意义。丰度较低且不带电荷的氨基酸残基是形成异质性较低的偶联物并保留生物功能的有趣靶点。苯基脲唑(PhUr)、N-甲基苯基脲唑(NMePhUr)和N-甲基鲁米诺(NMeLum)衍生物在化学或酶促氧化后被描述为酪氨酸(Y)锚定基团。最近,我们开发了第一种电化学Y-生物偶联方法,即eY-点击法,用于在生物相容性介质中激活PhUr。在这项工作中,我们评估了用一组PhUr、NMePhUr和NMeLum衍生物进行eY-点击偶联的局限性、优点和相对效率。结果表明,NMeLum具有很高的效率,在温和的电化学激活后,对多肽和生物学相关蛋白质表现出完全的Y-化学选择性。在质谱分析过程中从未观察到亲核或杂芳族氨基酸(如赖氨酸或色氨酸)上的副反应。通过结合eY-点击和应变促进的叠氮化物-炔烃环化(SPAAC)的两步法,用荧光探针有效地标记了肌红蛋白、牛血清白蛋白、植物甘露糖苷酶、葡萄糖氧化酶和治疗相关抗体曲妥珠单抗。通过圆二色性观察到蛋白质保留了其结构完整性,并且生物层干涉测量表明曲妥珠单抗偶联物对天然HER2配体具有相似的结合亲和力。与我们之前描述的使用PhUr的方案相比,使用NMeLum物种的eY-点击显示出更快的反应动力学、更高(完全)的Y-化学选择性和反应性,并且提供了对溶剂暴露的Y进行双重标记的有趣可能性。