Department of Pharmaceutical and Pharmacological Sciences, University of Padua, Via F. Marzolo 5, 35131, Padua, Italy.
CRIBI Biotechnology Centre, University of Padua, Viale G. Colombo 3, 35121, Padua, Italy.
Amino Acids. 2018 Jul;50(7):923-932. doi: 10.1007/s00726-018-2563-1. Epub 2018 Apr 7.
Microbial transglutaminase (TGase) has been successfully used to produce site-specific protein conjugates derivatized at the level of glutamine (Gln) or lysine (Lys) residues with diverse applications. Here, we study the drug human interferon β-1a (IFN) as a substrate of TGase. The derivatization reaction was performed using carbobenzoxy-L-glutaminyl-glycine to modify Lys residues and dansylcadaverine for Gln residues. The 166 amino acids polypeptide chain of IFN β-1a contains 11 Lys and 11 Gln residues potential sites of TGase derivatization. By means of mass spectrometry analyses, we demonstrate the highly selective derivatization of this protein by TGase at the level of Lys115 and as secondary site at the level of Lys33, while no reactive Gln residue was detected. Limited proteolysis experiments were performed on IFN to determine flexible regions of the protein under physiological conditions. Interestingly, primary and secondary sites of limited proteolysis and of TGase derivatization occur at the same regions of the polypeptide chain, indicating that the extraordinary selectivity of the TGase-mediated reaction is dictated by the conformational features of the protein substrate. We envisage that the TGase-mediated derivatization of IFN can be used to produce interesting derivatives of this important therapeutic protein.
微生物转谷氨酰胺酶 (TGase) 已成功用于制备在谷氨酰胺 (Gln) 或赖氨酸 (Lys) 残基水平上衍生的具有多种应用的定点蛋白质缀合物。在这里,我们研究了药物人干扰素 β-1a (IFN) 作为 TGase 的底物。衍生反应使用 N-羰苄氧羰基-L-谷氨酰甘氨酸修饰 Lys 残基,使用丹磺酰cadaverine 修饰 Gln 残基。IFN β-1a 的 166 个氨基酸多肽链包含 11 个 Lys 和 11 个 Gln 残基,这些残基是 TGase 衍生的潜在位点。通过质谱分析,我们证明了 TGase 可以在 Lys115 水平上高度选择性地衍生该蛋白质,并在 Lys33 水平上作为次要位点进行衍生,而没有检测到反应性的 Gln 残基。对 IFN 进行有限蛋白酶解实验,以确定生理条件下蛋白质的柔性区域。有趣的是,有限蛋白酶解和 TGase 衍生的一级和二级位点发生在多肽链的相同区域,这表明 TGase 介导的反应的非凡选择性是由蛋白质底物的构象特征决定的。我们设想,IFN 的 TGase 介导的衍生化可以用于制备这种重要治疗蛋白的有趣衍生物。