Institute of Biomedical Sciences and Graduate School of Pharmaceutical Sciences, Tokushima University.
Osaka University of Pharmaceutical Sciences.
Chem Pharm Bull (Tokyo). 2020 Dec 1;68(12):1226-1232. doi: 10.1248/cpb.c20-00674. Epub 2020 Oct 7.
Proteins incorporating artificial moieties such as fluorophores and drugs have enjoyed increasing use in chemical biology and drug development research. Preparation of such artificial protein derivatives has relied mainly on native chemical ligation in which peptide/protein thioesters chemoselectively react with N-terminal cysteine (Cys) peptides to afford protein molecules. The protein thioesters derived from expressed proteins represent thioesters that are very useful for the preparation of artificial proteins by native chemical ligation with synthetic peptides with N-terminal Cys. We recently have developed a traceless thioester-producing protocol using carboxypeptidase Y (CPaseY) which is compatible with an expressed protein. The traceless character is ensured by CPaseY-mediated hydrazinolysis of C-terminal Xaa (X)-Cys-proline (Pro)-leucine (Leu)-OH sequence followed by an auto-processing of the Cys-Pro (CP) dipeptide unit, affording the corresponding X-thioester (X-SR). However, hydrazinolysis of the amide bond in the prolyl leucine junction depends significantly on the nature of X. In the case of hydrophobic X residues, the hydrazinolysis overreacts to give several hydrazides while the reaction of hydrophilic X residues proceeds slowly. In this research, we attempted to develop an X-independent CPaseY-mediated protocol and found that the incorporation of a triple CP sequence into the C-terminal end (X-(CP)-Leu-OH) allows for efficient X-SR formation in a manner that is independent of X.
将人工部分(如荧光团和药物)掺入蛋白质的方法在化学生物学和药物开发研究中得到了越来越多的应用。此类人工蛋白质衍生物的制备主要依赖于天然化学连接,其中肽/蛋白质硫酯选择性地与 N 端半胱氨酸(Cys)肽反应,从而得到蛋白质分子。来源于表达蛋白的蛋白质硫酯代表了非常有用的硫酯,可用于通过与具有 N 端 Cys 的合成肽进行天然化学连接来制备人工蛋白质。我们最近开发了一种使用羧肽酶 Y(CPaseY)的无痕迹硫酯生产方案,该方案与表达蛋白兼容。无痕迹特性是通过 CPaseY 介导的 C 末端 Xaa(X)-Cys-脯氨酸(Pro)-亮氨酸(Leu)-OH 序列的肼解以及 Cys-Pro(CP)二肽单元的自动处理来确保的,从而得到相应的 X-硫酯(X-SR)。然而,脯氨酸亮氨酸连接处酰胺键的肼解在很大程度上取决于 X 的性质。在疏水性 X 残基的情况下,肼解反应过度,会产生几种酰肼,而亲水性 X 残基的反应则进展缓慢。在这项研究中,我们试图开发一种不依赖于 X 的 CPaseY 介导的方案,发现将三 CP 序列掺入 C 末端(X-(CP)-Leu-OH)可以以不依赖于 X 的方式有效地形成 X-SR。