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Proteomic characterization of serine hydrolase activity and composition in normal urine

机译:正常尿液中丝氨酸水解酶活性和组成的蛋白质组学表征

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Background Serine hydrolases constitute a large enzyme family involved in a diversity of proteolytic and metabolic processes which are essential for many aspects of normal physiology. The roles of serine hydrolases in renal function are largely unknown and monitoring their activity may provide important insights into renal physiology. The goal of this study was to profile urinary serine hydrolases with activity-based protein profiling (ABPP) and to perform an in-depth compositional analysis. Methods Eighteen healthy individuals provided random, mid-stream urine samples. ABPP was performed by reacting urines (n =?18) with a rhodamine-tagged fluorophosphonate probe and visualizing on SDS-PAGE. Active serine hydrolases were isolated with affinity purification and identified on MS-MS. Enzyme activity was confirmed with substrate specific assays. A complementary 2D LC/MS-MS analysis was performed to evaluate the composition of serine hydrolases in urine. Results Enzyme activity was closely, but not exclusively, correlated with protein quantity. Affinity purification and MS/MS identified 13 active serine hydrolases. The epithelial sodium channel (ENaC) and calcium channel (TRPV5) regulators, tissue kallikrein and plasmin were identified in active forms, suggesting a potential role in regulating sodium and calcium reabsorption in a healthy human model. Complement C1r subcomponent-like protein, mannan binding lectin serine protease 2 and myeloblastin (proteinase 3) were also identified in active forms. The in-depth compositional analysis identified 62 serine hydrolases in urine independent of activity state. Conclusions This study identified luminal regulators of electrolyte homeostasis in an active state in the urine, which suggests tissue kallikrein and plasmin may be functionally relevant in healthy individuals. Additional serine hydrolases were identified in an active form that may contribute to regulating innate immunity of the urinary tract. Finally, the optimized ABPP technique in urine demonstrates its feasibility, reproducibility and potential applicability to profiling urinary enzyme activity in different renal physiological and pathophysiological conditions.
机译:背景技术丝氨酸水解酶构成了一个大的酶家族,参与了多种蛋白水解和代谢过程,这对于正常生理的许多方面都是必不可少的。丝氨酸水解酶在肾功能中的作用尚不清楚,监测其活性可能为了解肾脏生理学提供重要见解。这项研究的目的是通过基于活动的蛋白质谱分析(ABPP)分析尿液丝氨酸水解酶,并进行深入的成分分析。方法18名健康个体随机抽取中游尿液样本。 ABPP是通过使尿液(n = 18)与若丹明标记的氟代磷酸酯探针反应并在SDS-PAGE上观察而进行的。通过亲和纯化分离出活性丝氨酸水解酶,并在MS-MS上鉴定。用底物特异性测定法确认酶活性。进行了补充二维LC / MS-MS分析以评估尿液中丝氨酸水解酶的组成。结果酶活性与蛋白质数量密切相关,但不唯一。亲和纯化和MS / MS鉴定出13种活性丝氨酸水解酶。上皮钠通道(ENaC)和钙通道(TRPV5)调节剂,组织激肽释放酶和纤溶酶已被鉴定为活性形式,表明在健康人类模型中调节钠和钙重吸收具有潜在作用。补体C1r亚成分样蛋白,甘露聚糖结合凝集素丝氨酸蛋白酶2和成肌成纤维蛋白(蛋白酶3)也被确定为活跃形式。深入的成分分析确定了尿液中62种丝氨酸水解酶,与活性状态无关。结论本研究确定了尿液中电解质稳态的活跃状态下的管腔调节剂,这表明激肽释放酶和纤溶酶在健康个体中可能与功能相关。还鉴定了以活性形式存在的其他丝氨酸水解酶,其可以有助于调节尿道的先天免疫。最后,优化的尿液ABPP技术证明了其在不同肾脏生理和病理生理状况下分析尿酶活性的可行性,可重复性和潜在适用性。

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