School of Biological Sciences, Nanyang Technological University , 60 Nanyang Drive, 637551, Singapore.
J Proteome Res. 2012 Mar 2;11(3):1804-11. doi: 10.1021/pr201048c. Epub 2012 Feb 3.
Deamidation of asparaginyl residues in proteins produces a mixture of asparaginyl, n-aspartyl, and isoaspartyl residues, which affects the proteins' structure, function, and stability. Thus, it is important to identify and quantify the products to evaluate the effects in biological systems. It is still a challenging task to distinguish between the n-Asp and isoAsp deamidation products in a proteome-wide analysis because of their similar physicochemical properties. The quantification of the isomeric deamidated peptides is also rather difficult because of their coelution/poor separation in reverse-phase liquid chromatography (RPLC). We here propose a RP-ERLIC-MS/MS approach for separating and quantifying on a proteome-wide scale the three products related to deamidation of the same peptide. The key to the method is the use of RPLC in the first dimensional separation and ERLIC (electrostatic repulsion-hydrophilic interaction chromatography) in the second, with direct online coupling to tandem MS. The coelution of the three deamidation-related peptides in RPLC is then an asset, as they are collected in the same fraction. They are then separated and identified in the second dimension with ERLIC, which separates peptides on the basis of both pI and GRAVY values. The coelution of the three products in RPLC and their efficient separation in ERLIC were validated using synthetic peptides, and the performance of ERLIC-MS/MS was tested using peptide mixtures from two proteins. Applying this sequence to rat liver tissue, we identified 302 unique N-deamidated peptides, of which 20 were identified via all three deamidation-related products and 70 of which were identified via two of them.
蛋白质中天冬酰胺残基的脱酰胺作用会产生天冬酰胺、n-天冬氨酸和异天冬氨酸残基的混合物,这会影响蛋白质的结构、功能和稳定性。因此,鉴定和定量这些产物以评估它们在生物系统中的影响非常重要。由于其相似的物理化学性质,在蛋白质组范围内的分析中区分 n-Asp 和 isoAsp 脱酰胺产物仍然是一项具有挑战性的任务。由于它们在反相液相色谱(RPLC)中共同洗脱/分离不良,因此对异构脱酰胺肽的定量也相当困难。我们在这里提出了一种 RP-ERLIC-MS/MS 方法,用于在蛋白质组范围内分离和定量与同一种肽的脱酰胺相关的三种产物。该方法的关键是在第一维分离中使用 RPLC,在第二维分离中使用 ERLIC(静电排斥-亲水相互作用色谱),并直接在线耦合到串联 MS。然后,这三种与脱酰胺相关的肽在 RPLC 中的共洗脱是一种优势,因为它们被收集在同一馏分中。然后,它们在第二维中通过 ERLIC 进行分离和鉴定,该方法基于 pI 和 GRAVY 值分离肽。使用合成肽验证了 RPLC 中三种产物的共洗脱及其在 ERLIC 中的有效分离,并使用两种蛋白质的肽混合物测试了 ERLIC-MS/MS 的性能。将该序列应用于大鼠肝组织,我们鉴定了 302 个独特的 N-脱酰胺肽,其中 20 个通过所有三种脱酰胺相关产物鉴定,70 个通过其中两种产物鉴定。