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通过对猪伤口渗出物的降解组学分析来评估皮肤伤口愈合过程中蛋白酶动态变化的体内评估。

In vivo assessment of protease dynamics in cutaneous wound healing by degradomics analysis of porcine wound exudates.

机构信息

From the ‡ETH Zurich, Department of Biology, Institute of Molecular Health Sciences, Otto-Stern-Weg 7, 8093 Zurich, Switzerland;

§Paul Hartmann AG, Paul Hartmann Strasse 12, 89522 Heidenheim, Germany;

出版信息

Mol Cell Proteomics. 2015 Feb;14(2):354-70. doi: 10.1074/mcp.M114.043414. Epub 2014 Dec 16.

Abstract

Proteases control complex tissue responses by modulating inflammation, cell proliferation and migration, and matrix remodeling. All these processes are orchestrated in cutaneous wound healing to restore the skin's barrier function upon injury. Altered protease activity has been implicated in the pathogenesis of healing impairments, and proteases are important targets in diagnosis and therapy of this pathology. Global assessment of proteolysis at critical turning points after injury will define crucial events in acute healing that might be disturbed in healing disorders. As optimal biospecimens, wound exudates contain an ideal proteome to detect extracellular proteolytic events, are noninvasively accessible, and can be collected at multiple time points along the healing process from the same wound in the clinics. In this study, we applied multiplexed Terminal Amine Isotopic Labeling of Substrates (TAILS) to globally assess proteolysis in early phases of cutaneous wound healing. By quantitative analysis of proteins and protein N termini in wound fluids from a clinically relevant pig wound model, we identified more than 650 proteins and discerned major healing phases through distinctive abundance clustering of markers of inflammation, granulation tissue formation, and re-epithelialization. TAILS revealed a high degree of proteolysis at all time points after injury by detecting almost 1300 N-terminal peptides in ∼450 proteins. Quantitative positional proteomics mapped pivotal interdependent processing events in the blood coagulation and complement cascades, temporally discerned clotting and fibrinolysis during the healing process, and detected processing of complement C3 at distinct time points after wounding and by different proteases. Exploiting data on primary cleavage specificities, we related candidate proteases to cleavage events and revealed processing of the integrin adapter protein kindlin-3 by caspase-3, generating new hypotheses for protease-substrate relations in the healing skin wound in vivo. The data have been deposited to the ProteomeXchange Consortium with identifier PXD001198.

摘要

蛋白酶通过调节炎症、细胞增殖和迁移以及基质重塑来控制复杂的组织反应。所有这些过程都在皮肤伤口愈合中进行协调,以在受伤后恢复皮肤的屏障功能。蛋白酶活性的改变与愈合受损的发病机制有关,蛋白酶是这种病理诊断和治疗的重要靶点。在损伤后关键转折点对蛋白酶解的全面评估将定义急性愈合过程中的关键事件,这些事件在愈合障碍中可能会受到干扰。作为最佳生物标本,伤口渗出物包含一个理想的蛋白质组,可用于检测细胞外蛋白水解事件,可从临床同一伤口的愈合过程中多个时间点非侵入性地获得,并可收集。在这项研究中,我们应用多重末端胺同位素标记的底物(TAILS)来全面评估皮肤伤口愈合早期的蛋白水解。通过对临床相关猪伤口模型中伤口液中的蛋白质和蛋白质 N 末端进行定量分析,我们在伤口液中鉴定出了 650 多种蛋白质,并通过炎症、肉芽组织形成和再上皮化标志物的丰度聚类来区分主要的愈合阶段。TAILS 通过检测受伤后几乎所有时间点近 1300 个 N 末端肽,揭示了高度的蛋白水解。定量位置蛋白质组学绘制了血液凝固和补体级联中的关键相互依赖的加工事件图谱,在愈合过程中时间分辨地检测到凝血和纤维蛋白溶解,并且在受伤后不同时间点和不同蛋白酶检测到补体 C3 的加工。利用关于主要切割特异性的数据分析,我们将候选蛋白酶与切割事件相关联,并揭示了半胱天冬酶-3对整合素接头蛋白 kindlin-3 的加工,为体内愈合皮肤伤口中蛋白酶-底物关系提出了新的假设。这些数据已被存入 ProteomeXchange 联盟,标识符为 PXD001198。

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