Nardiello Donatella, Palermo Carmen, Natale Anna, Quinto Maurizio, Centonze Diego
Dipartimento di Scienze Agrarie, degli Alimenti e dell' Ambiente, Università degli Studi di Foggia, Via Napoli, 25-71122 Foggia, Italy.
Dipartimento di Scienze Agrarie, degli Alimenti e dell' Ambiente, Università degli Studi di Foggia, Via Napoli, 25-71122 Foggia, Italy.
Anal Chim Acta. 2015 Jan 7;854:106-17. doi: 10.1016/j.aca.2014.10.053. Epub 2014 Nov 4.
A strategy based on a simultaneous multi-enzyme digestion coupled with electron transfer dissociation (ETD) and collision-induced dissociation (CID) was developed for protein sequencing and characterization, as a valid alternative platform in ion-trap based proteomics. The effect of different proteolytic procedures using chymotrypsin, trypsin, a combination of both, and Lys-C, was carefully evaluated in terms of number of identified peptides, protein coverage, and score distribution. A systematic comparison between CID and ETD is shown for the analysis of peptides originating from the in-solution digestion of standard caseins. The best results were achieved with a trypsin/chymotrypsin mix combined with CID and ETD operating in alternating mode. A post-database search validation of MS/MS dataset was performed, then, the matched peptides were cross checked by the evaluation of ion scores, rank, number of experimental product ions, and their relative abundances in the MS/MS spectrum. By integrated CID/ETD experiments, high quality-spectra have been obtained, thus allowing a confirmation of spectral information and an increase of accuracy in peptide sequence assignments. Overlapping peptides, produced throughout the proteins, reduce the ambiguity in mapping modifications between natural variants and animal species, and allow the characterization of post translational modifications. The advantages of using the enzymatic mix trypsin/chymotrypsin were confirmed by the nanoLC and CID/ETD tandem mass spectrometry of goat milk proteins, previously separated by two-dimensional gel electrophoresis.
开发了一种基于同步多酶消化结合电子转移解离(ETD)和碰撞诱导解离(CID)的策略用于蛋白质测序和表征,作为基于离子阱的蛋白质组学中一个有效的替代平台。针对使用胰凝乳蛋白酶、胰蛋白酶、二者组合以及Lys-C的不同蛋白酶解程序,在鉴定出的肽段数量、蛋白质覆盖率和得分分布方面进行了仔细评估。展示了CID和ETD之间针对源自标准酪蛋白溶液内消化产生的肽段分析的系统比较。使用胰蛋白酶/胰凝乳蛋白酶混合物结合交替模式运行的CID和ETD取得了最佳结果。随后对MS/MS数据集进行了数据库搜索后验证,然后通过评估离子得分、排名、实验产物离子数量及其在MS/MS谱图中的相对丰度对匹配的肽段进行交叉核对。通过整合CID/ETD实验,获得了高质量谱图,从而能够确认光谱信息并提高肽段序列分配的准确性。贯穿蛋白质产生的重叠肽段减少了天然变体和动物物种之间映射修饰的歧义性,并允许对翻译后修饰进行表征。使用胰蛋白酶/胰凝乳蛋白酶酶混合物的优势通过先前经二维凝胶电泳分离的山羊乳蛋白的纳升液相色谱和CID/ETD串联质谱得到了证实。