Department of Basic Medical Science, College of Medicine, QU Health, Qatar University, P.O. Box 2713, Doha, Qatar.
AGE-Omics and Systems Biology Research Group, Warwick Medical School, Clinical Sciences Research Laboratories, University Hospital, Coventry CV2 2DX, U.K.
Essays Biochem. 2020 Feb 17;64(1):169-183. doi: 10.1042/EBC20190047.
Liquid chromatography-tandem mass spectrometry (LC-MS/MS) provides a high sensitivity, high specificity multiplexed method for concurrent detection of adducts formed by protein glycation, oxidation and nitration, also called AGEomics. Combined with stable isotopic dilution analysis, it provides for robust quantitation of protein glycation, oxidation and nitration adduct analytes. It is the reference method for such measurements. LC-MS/MS has been used to measure glycated, oxidized and nitrated amino acids - also called glycation, oxidation and nitration free adducts, with a concurrent quantitation of the amino acid metabolome in physiological fluids. Similar adduct residues in proteins may be quantitated with prior exhaustive enzymatic hydrolysis. It has also been applied to quantitation of other post-translation modifications, such as citrullination and formation of Nε-(γ-glutamyl)lysine crosslink by transglutaminases. Application to cellular and extracellular proteins gives estimates of the steady-state levels of protein modification by glycation, oxidation and nitration, and measurement of the accumulation of glycation, oxidation and nitration adducts in cell culture medium and urinary excretion gives an indication of flux of adduct formation. Measurement of glycation, oxidation and nitration free adducts in plasma and urine provides for estimates of renal clearance of free adducts. Diagnostic potential in clinical studies has been enhanced by the combination of estimates of multiple adducts in optimized diagnostic algorithms by machine learning. Recent applications have been in early-stage detection of metabolic, vascular and renal disease, and arthritis, metabolic control and risk of developing vascular complication in diabetes, and a blood test for autism.
液相色谱-串联质谱(LC-MS/MS)提供了一种高灵敏度、高特异性的多重方法,可同时检测蛋白质糖化、氧化和硝化形成的加合物,也称为 AGEomics。结合稳定同位素稀释分析,它可以对蛋白质糖化、氧化和硝化加合物分析物进行稳健定量。它是此类测量的参考方法。LC-MS/MS 已用于测量糖化、氧化和硝化氨基酸 - 也称为糖化、氧化和硝化游离加合物,同时对生理体液中的氨基酸代谢组进行定量。蛋白质中类似的加合物残基可以通过预先进行彻底的酶水解进行定量。它也已应用于其他翻译后修饰的定量,例如瓜氨酸化和转谷氨酰胺酶形成的 Nε-(γ-谷氨酰基)赖氨酸交联。应用于细胞内和细胞外蛋白质,可以估计蛋白质糖化、氧化和硝化的稳态水平,并且测量细胞培养物培养基和尿液排泄中糖化、氧化和硝化加合物的积累,可以指示加合物形成的通量。测量血浆和尿液中的糖化、氧化和硝化游离加合物,可以估计游离加合物的肾清除率。通过机器学习优化的诊断算法中对多种加合物的估计,增强了临床研究中的诊断潜力。最近的应用包括在代谢、血管和肾脏疾病以及关节炎、糖尿病中代谢控制和血管并发症风险的早期检测,以及自闭症的血液检测。