Hao Piliang, Sze Siu Kwan
School of Biological Sciences, Nanyang Technological University, Singapore.
Singapore Centre on Environmental Life Sciences Engineering, Nanyang Technological University, Singapore.
Curr Protoc Protein Sci. 2014 Nov 3;78:24.5.1-24.5.14. doi: 10.1002/0471140864.ps2405s78.
Deamidation of asparagines and glutamines occurs spontaneously in proteins and results in protein degradation. Deamidation of asparaginyl residues in proteins produces a mixture of asparaginyl, n-aspartyl, and isoaspartyl residues, which has been linked to the pathology of some neurodegenerative diseases. However, accurate proteomic analysis of deamidation is challenging since it occurs quickly during conventional proteomic sample preparation, and the co-elution of the two resulting isomeric deamidated peptides in reversed-phase liquid chromatography (RPLC) compromises their identification and quantification using RPLC-MS/MS. To overcome these difficulties, a novel sample preparation protocol to minimize artificial deamidation has been developed alongside an offline RP-ERLIC-MS/MS (reversed-phase chromatography fractionation followed by electrostatic repulsion-hydrophilic interaction chromatography coupled with MS/MS) strategy to separate and quantify the three deamidation products from the same peptide on a proteome-wide scale. These protocols are detailed in this unit.
天冬酰胺和谷氨酰胺的脱酰胺作用在蛋白质中会自发发生,并导致蛋白质降解。蛋白质中天冬酰胺残基的脱酰胺作用会产生天冬酰胺基、N-天冬氨酰基和异天冬氨酰基残基的混合物,这与某些神经退行性疾病的病理学有关。然而,由于脱酰胺作用在传统蛋白质组学样品制备过程中迅速发生,并且在反相液相色谱(RPLC)中两种产生的异构脱酰胺肽的共洗脱会影响它们使用RPLC-MS/MS进行的鉴定和定量,因此对脱酰胺作用进行准确的蛋白质组学分析具有挑战性。为了克服这些困难,已经开发了一种新的样品制备方案以尽量减少人工脱酰胺作用,同时还开发了一种离线RP-ERLIC-MS/MS(反相色谱分离后接静电排斥-亲水相互作用色谱与MS/MS联用)策略,以便在蛋白质组范围内从同一肽段中分离和定量三种脱酰胺产物。本单元将详细介绍这些方案。