Taverna Domenico, Mignogna Chiara, Gabriele Caterina, Santise Gianluca, Donato Giuseppe, Cuda Giovanni, Gaspari Marco
Research Center for Advanced Biochemistry and Molecular Biology, Department of Experimental and Clinical Medicine, Magna Graecia University of Catanzaro, Campus "S. Venuta", Viale Europa, Loc. Germaneto, 88100, Catanzaro, Italy.
Department of Health Science, Magna Graecia University of Catanzaro, Viale Europa, 88100, Catanzaro, Italy.
Anal Bioanal Chem. 2017 Apr;409(11):2919-2930. doi: 10.1007/s00216-017-0237-6. Epub 2017 Feb 11.
An optimized workflow for multiplexed and spatially localized on-tissue quantitative protein analysis is here presented. The method is based on the use of an enzyme delivery platform, a polymeric hydrogel disc, allowing for a localized digestion directly onto the tissue surface coupled with an isobaric mass tag strategy for peptide labeling and relative quantification. The digestion occurs within such hydrogels, followed by peptide solvent extraction and identification by liquid chromatography coupled to high-resolution tandem mass spectrometry (LC-MS/MS). Since this is a histology-directed on-tissue analysis, multiple hydrogels were placed onto morphologically and spatially different regions of interest (ROIs) within the tissue surface, e.g., cardiac myxoma tumor vascularized region and the adjacent hypocellular area. After a microwave digestion step (2 min), enzymatically cleaved peptides were labeled using TMT reagents with isobaric mass tags, enabling analysis of multiple samples per experiment. Thus, N = 8 hydrogel-digested samples from cardiac myxoma serial tissue sections (N = 4 from the vascularized ROIs and N = 4 from the adjacent hypocellular areas) were processed and then combined before a single LC-MS/MS analysis. Regulated proteins from both cardiac myxoma regions were assayed in a single experiment. Graphical abstract The workflow for histology-guided on-tissue localized protein digestion followed by isobaric mass tagging and LC-MS/MS analysis for proteins quantification is here summarized.
本文介绍了一种用于多重和空间定位组织定量蛋白质分析的优化工作流程。该方法基于使用一种酶递送平台——聚合物水凝胶盘,它能在组织表面直接进行局部消化,并结合等压质量标签策略进行肽段标记和相对定量。消化在这种水凝胶中进行,随后进行肽段溶剂萃取,并通过液相色谱与高分辨率串联质谱(LC-MS/MS)联用进行鉴定。由于这是一种基于组织学的组织分析方法,多个水凝胶被放置在组织表面形态学和空间上不同的感兴趣区域(ROI),例如心脏黏液瘤肿瘤血管化区域和相邻的低细胞区域。经过微波消化步骤(2分钟)后,使用带有等压质量标签的TMT试剂对酶解肽段进行标记,从而能够在每个实验中分析多个样本。因此,对来自心脏黏液瘤连续组织切片的N = 8个水凝胶消化样本(来自血管化ROI的N = 4个,来自相邻低细胞区域的N = 4个)进行处理,然后在单次LC-MS/MS分析之前进行合并。在一次实验中对来自两个心脏黏液瘤区域的调控蛋白进行检测。图形摘要 这里总结了组织学引导下组织局部蛋白质消化,随后进行等压质量标记和LC-MS/MS分析以进行蛋白质定量的工作流程。