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肠道缺血再灌注对大鼠中性粒细胞蛋白质组的影响分析

Analysis of the Effect of Intestinal Ischemia and Reperfusion on the Rat Neutrophils Proteome.

作者信息

Tahir Muhammad, Arshid Samina, Fontes Belchor, Castro Mariana S, Luz Isabelle S, Botelho Katyelle L R, Sidoli Simone, Schwämmle Veit, Roepstorff Peter, Fontes Wagner

机构信息

Laboratory of Biochemistry and Protein Chemistry, Department of Cell Biology, Institute of Biology, University of Brasilia, Brasília, Brazil.

Department of Biochemistry and Molecular Biology, University of Southern Denmark, Odense, Denmark.

出版信息

Front Mol Biosci. 2018 Nov 29;5:89. doi: 10.3389/fmolb.2018.00089. eCollection 2018.

Abstract

Intestinal ischemia and reperfusion injury is a model system of possible consequences of severe trauma and surgery, which might result into tissue dysfunction and organ failure. Neutrophils contribute to the injuries preceded by ischemia and reperfusion. However, the mechanisms by which intestinal ischemia and reperfusion stimulate and activate circulating neutrophils is still not clear. In this work, we used proteomics approach to explore the underlying regulated mechanisms in Wistar rat neutrophils after ischemia and reperfusion. We isolated neutrophils from three different biological groups; control, sham laparotomy, and intestinal ischemia/reperfusion. In the workflow, we included iTRAQ-labeling quantification and peptide fractionation using HILIC prior to LC-MS/MS analysis. From proteomic analysis, we identified 2,045 proteins in total that were grouped into five different clusters based on their regulation trend between the experimental groups. A total of 417 proteins were found as significantly regulated in at least one of the analyzed conditions. Interestingly, the enzyme prediction analysis revealed that ischemia/reperfusion significantly reduced the relative abundance of most of the antioxidant and pro-survival molecules to cause more tissue damage and ROS production whereas some of the significantly up regulated enzymes were involved in cytoskeletal rearrangement, adhesion and migration. Clusters based KEGG pathways analysis revealed high motility, phagocytosis, directional migration, and activation of the cytoskeletal machinery in neutrophils after ischemia and reperfusion. Increased ROS production and decreased phagocytosis were experimentally validated by microscopy assays. Taken together, our findings provide a characterization of the rat neutrophil response to intestinal ischemia and reperfusion and the possible mechanisms involved in the tissue injury by neutrophils after intestinal ischemia and reperfusion.

摘要

肠缺血再灌注损伤是严重创伤和手术可能后果的一种模型系统,这可能导致组织功能障碍和器官衰竭。中性粒细胞在缺血再灌注之前的损伤中起作用。然而,肠缺血再灌注刺激和激活循环中性粒细胞的机制仍不清楚。在这项研究中,我们使用蛋白质组学方法来探索Wistar大鼠中性粒细胞在缺血再灌注后的潜在调控机制。我们从三个不同的生物学组中分离中性粒细胞:对照组、假手术组和肠缺血/再灌注组。在工作流程中,我们在LC-MS/MS分析之前包括iTRAQ标记定量和使用亲水相互作用色谱(HILIC)进行肽段分级分离。通过蛋白质组学分析,我们总共鉴定出2045种蛋白质,根据它们在实验组之间的调控趋势分为五个不同的簇。总共发现417种蛋白质在至少一种分析条件下有显著调控。有趣的是,酶预测分析表明,缺血/再灌注显著降低了大多数抗氧化和促生存分子的相对丰度,从而导致更多的组织损伤和活性氧生成,而一些显著上调的酶参与细胞骨架重排、黏附和迁移。基于簇的KEGG通路分析显示,缺血再灌注后中性粒细胞具有高运动性、吞噬作用、定向迁移和细胞骨架机制的激活。通过显微镜检测实验验证了活性氧生成增加和吞噬作用降低。综上所述,我们的研究结果描述了大鼠中性粒细胞对肠缺血再灌注的反应以及肠缺血再灌注后中性粒细胞参与组织损伤的可能机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8257/6281993/10ee7ab4b5db/fmolb-05-00089-g0001.jpg

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