首页> 外文期刊>Biochimica et biophysica acta: BBA: International journal of biochemistry, biophysics and molecular biololgy. Proteins and Proteomics >Development and validation of an improved diced electrophoresis gel assay cutter-plate system for enzymomics studies
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Development and validation of an improved diced electrophoresis gel assay cutter-plate system for enzymomics studies

机译:一种改进切块电泳凝胶测定切割板系统的开发与验证酶研究

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摘要

Diced electrophoresis gel (DEG) assay is a methodology to identify enzymes with a specified activity in complex cell or tissue lysates by means of two-dimensional separation using isoelectric focusing and native PAGE, followed by dicing of the gel into small pieces that are assayed separately, and digestion and peptide fingerprinting to identify the protein(s) of interest in positive wells. The existing hand-made system has some disadvantages, and here we describe the development and validation of an improved cutter-plate system that enables simple, reliable and reproducible DEG assay in a 384-well plate-based format with signal readout using fluorometric or LC-MS-based reaction monitoring. To illustrate the usefulness of this system, we describe its application to profile esterase activities in ovarian adenocarcinoma SKOV3 cell lysate and mouse liver lysate that activate a fluorogenic substrate, fluorescein dibutyrate (FDBu), as well as esterase activities in mouse liver lysate that activateS-bromobenzylglutathione dicyclopentyl ester (BBGDC), a prodrug of anti-tumor agentS-bromobenzylglutathione. The activity spot patterns detected for FDBu and BBGDC were completely different, indicating that different metabolic systems are involved in hydrolysis of these substrates. The major detected spot in each case was identified. The developed system provides a highly reproducible general assay platform that should be useful for characterizing novel protein functions in complex bio-samples, as well as enzymomics studies.
机译:切块电泳凝胶(DEG)测定是通过使用等电聚焦和天然页面通过二维分离鉴定在复杂细胞或组织裂解物中具有特定活性的酶的方法,然后将凝胶切成单独测定的小块,消化和肽指纹识别以鉴定阳性孔中兴趣的蛋白质。现有的手工制造系统具有一些缺点,这里我们描述了一种改进的刀具板系统的开发和验证,其通过使用荧光或LC的信号读数通过信号读数实现简单,可靠和可再现的DEG测定,从而实现了384孔板的格式-ms的反应监测。为了说明该系统的有用性,我们将其应用于卵巢腺癌中的酯酶活性在卵巢腺癌中的酯酶活性和小鼠肝脏裂解物中的氟氨酸碱(FDBU)中的小鼠肝裂解物,以及激活的酯酶活性 - Bromobenzylglutathione二环戊基酯(BBGDC),一种抗肿瘤试剂 - 溴苄基谷胱甘肽。检测到FDBU和BBGDC的活动点模式完全不同,表明不同的代谢系统涉及这些基材的水解。确定了每种情况的主要检测到的位置。开发系统提供了一种高度可重复的通用测定平台,可用于在复杂生物样本中表征新的蛋白质功能,以及酶研究。

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