Pirota Valentina, Monzani Enrico, Dell'Acqua Simone, Bacchella Chiara
Dipartimento di Chimica, Università di Pavia, Via Taramelli 12, 27100 Pavia, Italy.
Molecules. 2025 Jan 17;30(2):363. doi: 10.3390/molecules30020363.
Spontaneous cleavage reactions normally occur in vivo on amino acid peptide backbones, leading to fragmentation products that can have different physiological roles and toxicity, particularly when the substrate of the hydrolytic processes are neuronal peptides and proteins highly related to neurodegeneration. We report a hydrolytic study performed with the HPLC-MS technique at different temperatures (4 °C and 37 °C) on peptide fragments of different neuronal proteins (amyloid-β, tau, and α-synuclein) in physiological conditions in the presence of Cu and Zn ions, two metal ions found at millimolar concentrations in amyloid plaques. The coordination of these metal ions with these peptides significantly protects their backbones toward hydrolytic degradation, preserving the entire sequences over two weeks in solution, while the free peptides in the same buffer are fully fragmented after the same or even shorter incubation period. Our data show that peptide cleavage is not only ruled by the chemical sensitivity of amino acids, but the peptide conformation changes induced by metal coordination influence hydrolytic reactions. The enhanced stability of neuronal peptides provided by metal coordination can increase local levels of amyloidogenic species capable of seeding fibril growth, resulting in aberrant protein depositions and deficits in neuronal activity.
自发裂解反应通常在体内氨基酸肽主链上发生,产生的片段产物可能具有不同的生理作用和毒性,特别是当水解过程的底物是与神经退行性变高度相关的神经肽和蛋白质时。我们报告了一项利用高效液相色谱-质谱技术在不同温度(4℃和37℃)下,于生理条件下,在存在铜离子和锌离子(这两种金属离子在淀粉样斑块中以毫摩尔浓度存在)的情况下,对不同神经蛋白(淀粉样β蛋白、tau蛋白和α-突触核蛋白)的肽片段进行的水解研究。这些金属离子与这些肽的配位显著保护了它们的主链不被水解降解,在溶液中两周内保持整个序列完整,而相同缓冲液中的游离肽在相同或更短的孵育期后就会完全碎片化。我们的数据表明,肽的裂解不仅受氨基酸化学敏感性的支配,而且金属配位诱导的肽构象变化也会影响水解反应。金属配位提供的神经肽稳定性增强,会增加能够引发纤维生长的淀粉样蛋白生成物种的局部水平,导致异常的蛋白质沉积和神经元活动缺陷。