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“反向降解组学”,即通过多重毛细管电泳以及对荧光底物和反应产物进行共聚焦检测来监测蛋白水解修剪过程。

"Reverse degradomics", monitoring of proteolytic trimming by multi-CE and confocal detection of fluorescent substrates and reaction products.

作者信息

Piccard Helene, Hu Jialiang, Fiten Pierre, Proost Paul, Martens Erik, Van den Steen Philippe E, Van Damme Jo, Opdenakker Ghislain

机构信息

Laboratory of Immunobiology, Rega Institute for Medical Research, University of Leuven, Leuven, Belgium.

出版信息

Electrophoresis. 2009 Jul;30(13):2366-77. doi: 10.1002/elps.200800698.

Abstract

A platform for profiling of multiple proteolytic activities acting on one specific substrate, based on the use of a 96-channel capillary DNA sequencer with CE-LIF of labeled substrate peptides and reaction products is introduced. The approach consists of synthesis of a substrate peptide of interest, fluorescent labeling of the substrate, either aminoterminally by chemical coupling, or carboxyterminally by transglutaminase reaction, proteolysis by a biological mixture of proteases in the absence or presence of protease inhibitors, multi-channel analysis of substrate and reaction products, and data collection and processing. Intact substrate and reaction products, even when varying by only one amino acid, can be relatively semi-quantified in a high-throughput manner, yielding information on proteases acting in complex biological mixtures and without prepurification. Monitoring, classification and inhibition of multiple proteolytic activities are demonstrated on a model substrate, the aminoterminus of the mouse granulocyte chemotactic protein-2. In view of extensive processing of chemokines into various natural forms with different specific biological activities, and of the fragmentary knowledge of processing proteases, examples of processing by neutrophil degranulate, tumor cell culture fluids and plasma are provided. An example of selection and comparison of inhibitory mAbs illustrates that the platform is suitable for inhibitor screening. Whereas classical degradomics technologies analyze the substrate repertoire of one specific protease, here the complementary concept, namely the study of all proteases acting, in a biological context, on one specific substrate, is developed and tuned to identify key proteases and protease inhibitors for the processing of any biological substrate of interest.

摘要

介绍了一种基于使用带有标记底物肽和反应产物的CE-LIF的96通道毛细管DNA测序仪,用于分析作用于一种特定底物的多种蛋白水解活性的平台。该方法包括合成感兴趣的底物肽,对底物进行荧光标记,通过化学偶联在氨基末端或通过转谷氨酰胺酶反应在羧基末端进行标记,在存在或不存在蛋白酶抑制剂的情况下用蛋白酶生物混合物进行蛋白水解,对底物和反应产物进行多通道分析,以及数据收集和处理。完整的底物和反应产物,即使仅相差一个氨基酸,也可以以高通量方式进行相对半定量,从而产生有关在复杂生物混合物中起作用且无需预纯化的蛋白酶的信息。在模型底物小鼠粒细胞趋化蛋白-2的氨基末端上展示了对多种蛋白水解活性的监测、分类和抑制。鉴于趋化因子被广泛加工成具有不同特定生物活性的各种天然形式,以及对加工蛋白酶的零碎了解,提供了中性粒细胞脱颗粒、肿瘤细胞培养液和血浆进行加工的示例。抑制性单克隆抗体的选择和比较示例表明该平台适用于抑制剂筛选。传统的降解组学技术分析一种特定蛋白酶的底物库,而这里开发并调整了互补的概念,即在生物学背景下研究作用于一种特定底物的所有蛋白酶,以识别用于加工任何感兴趣生物底物的关键蛋白酶和蛋白酶抑制剂。

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