Grasso Giuseppe, Rizzarelli Enrico, Spoto Giuseppe
Dipartimento di Scienze Chimiche, Università di Catania, Viale Andrea Doria 6, 95125, Catania, Italy.
J Mass Spectrom. 2007 Dec;42(12):1590-8. doi: 10.1002/jms.1348.
The prominent role that insulin degrading enzyme (IDE) has in the clearance of insulin as well as of other molecules such as amyloid-beta has recently drawn much interest in the scientific community toward this protease. In order to give an insight into the manner of interaction of IDE with its substrates, several papers have focused on the structure of the IDE/insulin complex. In this scenario, although the cleavage sites involved in the interaction of insulin with IDE are known, a convenient experimental method that is able to identify in a complete and unambiguous way, all the peptide fragments generated by such interaction has yet to be found. MS-based experiments have often represented to be invaluable tools for the assessment of the cleavage sites, but the reported MS-spectra always show a partial coverage of all the peptide fragments generated by the enzyme interaction, lacking a complete characterization. In this work, we report a new experimental procedure by which an unambiguous as well as complete assignment of all the peptide fragments generated by the interaction of insulin with IDE is described. Atmospheric pressure/matrix-assisted laser desorption ionization (AP/MALDI) mass spectra are reported and the data recorded, together with the introduction of a reduction/alkylation step, allows us to fully characterize the cleavage sites of the bovine insulin interacting with IDE. Different experimental conditions are screened and some insights into the IDE/insulin system regarding preference of the cleavage and its dependence on particular experimental conditions used are also given. Investigation on the tendency that different insulin fragments have toward aggregation is also carried out. Good reproducibility, global and unambiguous assignment, low time-consuming experimental procedure, and requirements of enzyme in small amounts are some of the advantages of the proposed AP/MALDI based approach.
胰岛素降解酶(IDE)在胰岛素以及其他分子(如β-淀粉样蛋白)的清除过程中所起的重要作用,最近引起了科学界对这种蛋白酶的广泛关注。为了深入了解IDE与其底物的相互作用方式,多篇论文聚焦于IDE/胰岛素复合物的结构。在这种情况下,尽管胰岛素与IDE相互作用所涉及的切割位点是已知的,但尚未找到一种能够完整、明确地鉴定这种相互作用产生的所有肽片段的便捷实验方法。基于质谱的实验常常被视为评估切割位点的宝贵工具,但所报道的质谱图总是只能部分覆盖酶相互作用产生的所有肽片段,缺乏完整的表征。在这项工作中,我们报告了一种新的实验方法,通过该方法可以对胰岛素与IDE相互作用产生的所有肽片段进行明确且完整的归属。文中报道了大气压/基质辅助激光解吸电离(AP/MALDI)质谱图,所记录的数据以及引入的还原/烷基化步骤,使我们能够全面表征牛胰岛素与IDE相互作用的切割位点。我们筛选了不同的实验条件,并对IDE/胰岛素系统在切割偏好及其对所用特定实验条件的依赖性方面也给出了一些见解。还对不同胰岛素片段的聚集倾向进行了研究。所提出的基于AP/MALDI的方法具有良好的重现性、全局且明确的归属、耗时短的实验过程以及对酶量要求少等优点。