Hultsch C, Bergmann R, Pawelke B, Pietzsch J, Wuest F, Johannsen B, Henle T
Positron Emission Tomography Center, Institute of Bioinorganic and Radiopharmaceutical Chemistry, Research Center Rossendorf, Dresden, Germany.
Amino Acids. 2005 Dec;29(4):405-13. doi: 10.1007/s00726-005-0204-y. Epub 2005 May 31.
Isopeptide bonds between the epsilon-amino group of lysine and the gamma-carboxamide group of glutamine are formed during strong heating of pure proteins or, more important, by enzymatic reaction mediated by transglutaminases. Despite the wide use of a microbial transglutaminase in food biotechnology, up to now little is known about the metabolic fate of the isopeptide N(epsilon)-(gamma-glutamyl)-L-lysine. In the present study, N-succinimidyl-4-[(18)F]fluorobenzoate was used to modify N(epsilon)-(gamma-glutamyl)-L-lysine at each of its two alpha-amino groups, resulting in the 4-[(18)F]fluorobenzoylated derivatives, for which biodistribution, catabolism, and elimination were investigated in male Wistar rats. A significant different biochemical behavior of the two labelled isopeptides was observed in terms of in vitro stability, in vivo metabolism as well as biodistribution. The results suggest that the metabolic fate of isopeptides is likely to be dependent on how they are reabsorbed - free or peptide bound.
在纯蛋白质强烈加热过程中,或者更重要的是,在转谷氨酰胺酶介导的酶促反应中,赖氨酸的ε-氨基与谷氨酰胺的γ-羧酰胺基团之间会形成异肽键。尽管微生物转谷氨酰胺酶在食品生物技术中得到了广泛应用,但迄今为止,关于异肽N(ε)-(γ-谷氨酰基)-L-赖氨酸的代谢命运知之甚少。在本研究中,使用N-琥珀酰亚胺基-4-[(18)F]氟苯甲酸酯对N(ε)-(γ-谷氨酰基)-L-赖氨酸的两个α-氨基分别进行修饰,生成4-[(18)F]氟苯甲酰化衍生物,并在雄性Wistar大鼠中研究了其生物分布、分解代谢和排泄情况。在体外稳定性、体内代谢以及生物分布方面,观察到两种标记异肽具有显著不同的生化行为。结果表明,异肽的代谢命运可能取决于它们的重吸收方式——游离形式还是肽结合形式。