Exploring Glycated Sites in Human Serum Albumin: Impact of Sample Processing Techniques on Detection and Analysis

IF 2.7 3区 化学 Q2 CHEMISTRY, ANALYTICAL Analytical Methods Pub Date : 2024-07-03 DOI:10.1039/d4ay00503a
Namita Kumari, Madhumati S Vaishnav, S S SRIKANTA, P. R. Krishnaswamy, Navakanta Bhat
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Abstract

Glycation and the subsequent formation of advanced glycation end products (AGEs) disrupt and impair the physiological functions of proteins. This study presents a comprehensive glycation site mapping of human serum albumin (HSA) utilizing liquid chromatography-tandem mass spectrometry (LC-MS/MS). Both in-vitro glycation experiments and patient samples were investigated, exploring various enzymes, processing techniques, and their impacts on glycation site detection. A pilot study was conducted, analyzing sixteen serum samples, which spanned from healthy individuals to severe diabetic patients (with HbA1c values ranging from 5.7% to 18.1%). The aim was to comprehend the progression of glycation on various sites of HSA with increasing levels of glycation. Their glycated albumin levels (GA) spanned from 19.7% to 62.3%. Trypsin-mediated proteolytic digestion unveiled 12 glycation sites through direct in-solution digestion of whole serum. However, isolating albumin from serum enabled the identification of a higher number of glycation sites in each sample compared to direct serum digestion. Boronate affinity chromatography facilitated the segregation of less glycated albumin (LGA) from the more glycated albumin (MGA) fraction. Subsequent proteolytic digestion of both LGA and MGA samples revealed similar glycation sites. The MGA fraction exhibited a greater number of identified glycation sites, thereby elucidating which sites are particularly prone to glycation in highly glycated albumin samples. Changes in relative glycation levels were noted in the tryptic digests of albumin samples following the sample enrichment steps, as opposed to direct in-solution digestion of whole serum. Two enzymes, trypsin and Glu-C, were evaluated for efficacy in sequence coverage and glycation site analysis of HSA, with trypsin demonstrating superior efficiency over Glu-C.
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探索人血清白蛋白中的糖化位点:样品处理技术对检测和分析的影响
糖化和随后形成的高级糖化终产物(AGEs)会破坏和损害蛋白质的生理功能。本研究利用液相色谱-串联质谱法(LC-MS/MS)对人血清白蛋白(HSA)的糖化位点进行了全面的绘制。研究人员对体外糖化实验和患者样本进行了调查,探索了各种酶、处理技术及其对糖化位点检测的影响。我们进行了一项试点研究,分析了 16 份血清样本,其中既有健康人,也有严重的糖尿病患者(HbA1c 值从 5.7% 到 18.1%)。目的是了解 HSA 各个部位的糖化程度随着糖化水平的增加而加深。他们的糖化白蛋白水平(GA)从 19.7% 到 62.3%。通过直接在溶液中消化全血清,胰蛋白酶介导的蛋白分解揭示了 12 个糖化位点。不过,与直接消化血清相比,从血清中分离出白蛋白能在每个样本中鉴定出更多的糖化位点。硼酸盐亲和层析有助于将糖化程度较低的白蛋白(LGA)从糖化程度较高的白蛋白(MGA)中分离出来。随后对 LGA 和 MGA 样品进行蛋白水解,发现了相似的糖化位点。MGA 部分显示出更多已确定的糖化位点,从而阐明了高糖化白蛋白样本中哪些位点特别容易发生糖化。与直接在溶液中消化全血清相比,在样品富集步骤后对白蛋白样品进行胰蛋白酶消化时,相对糖化水平发生了变化。对胰蛋白酶和 Glu-C 这两种酶在 HSA 序列覆盖和糖化位点分析中的功效进行了评估,胰蛋白酶的功效优于 Glu-C。
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来源期刊
Analytical Methods
Analytical Methods CHEMISTRY, ANALYTICAL-FOOD SCIENCE & TECHNOLOGY
CiteScore
5.10
自引率
3.20%
发文量
569
审稿时长
1.8 months
期刊介绍: Early applied demonstrations of new analytical methods with clear societal impact
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