Probiodrug AG, Weinbergweg 22, Biozentrum, 06120, Halle (Saale), Germany.
Amino Acids. 2013 Apr;44(4):1205-14. doi: 10.1007/s00726-012-1454-0. Epub 2013 Jan 24.
The formation of isoaspartate (isoAsp) from asparaginyl or aspartyl residues is a spontaneous post-translational modification of peptides and proteins. Due to isopeptide bond formation, the structure and possibly function of peptides and proteins is altered. IsoAsp modifications within the peptide chain have been reported for many cytosolic proteins. Amyloid peptides (Aβ) deposited in Alzheimer's disease may carry an N-terminal isoAsp-modification. Here, we describe a quantitative investigation of isoAsp-formation from N-terminal Asn and Asp using model peptides similar to the Aβ N-terminus. The study is based on a newly developed separation of peptides using capillary electrophoresis (CE). 1H NMR was employed to validate the basic finding of N-terminal isoAsp-formation from Asp and Asn. Thereby, the isomerization of Asn at neutral pH (0.6 day(-1), peptide NGEF) is approximately six times faster than that within the peptide chain (AANGEF). The difference in velocity between Asn and Asp isomerization is approximately 50-fold. In contrast to N-terminal Asn, Asp isomerization is significantly accelerated at acidic pH. The kinetic solvent isotope (kD2O/kH2O) effect of 2.46 suggests a rate-limiting proton transfer in isoAsp-formation. The proton inventory is consistent with transfer of one proton in the transition state, supporting the previous notion of rate-limiting deprotonation of the peptide backbone amide during succinimide-intermediate formation. The study provides evidence for a spontaneous N-terminal isoAsp-formation within peptides and might explain the accumulation of N-terminal isoAsp in amyloid deposits.
异天冬氨酸(isoAsp)是由天冬酰胺或天冬氨酸残基自发形成的肽和蛋白质的翻译后修饰。由于异肽键的形成,肽和蛋白质的结构和功能可能会发生改变。已经报道了许多胞质蛋白肽链中的异天冬氨酸修饰。阿尔茨海默病中沉积的淀粉样肽(Aβ)可能带有 N 端异天冬氨酸修饰。在这里,我们使用与 Aβ N 端相似的模型肽描述了对 N 端天冬酰胺(Asn)和天冬氨酸(Asp)形成异天冬氨酸的定量研究。该研究基于毛细管电泳(CE)对肽的新的分离方法。1H NMR 用于验证从 Asp 和 Asn 形成 N 端异天冬氨酸的基本发现。由此,中性 pH(0.6 天(-1),肽 NGEF)下 Asn 的异构化速度约为肽链内异构化速度(AANGEF)的六倍。Asn 和 Asp 异构化之间的速度差异约为 50 倍。与 N 端天冬酰胺不同,酸性 pH 下 Asp 异构化显著加速。动力学溶剂同位素(kD2O/kH2O)效应为 2.46,表明在异天冬氨酸形成中存在限速质子转移。质子库存与过渡态中单质子转移一致,支持先前关于肽骨架酰胺在琥珀酰亚胺中间体形成过程中限速去质子化的观点。该研究为肽内自发的 N 端异天冬氨酸形成提供了证据,并可能解释了淀粉样沉积物中 N 端异天冬氨酸的积累。