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首页> 外文期刊>Analytical Biochemistry: An International Journal of Analytical and Preparative Methods >A nonradioactive high-throughput assay for screening and characterization of adenylation domains for nonribosomal peptide combinatorial biosynthesis
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A nonradioactive high-throughput assay for screening and characterization of adenylation domains for nonribosomal peptide combinatorial biosynthesis

机译:用于非核糖体肽组合生物合成的腺苷酸化结构域筛选和表征的非放射性高通量测定法

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摘要

Adenylation domains are critical enzymes that dictate the identity of the amino acid building blocks to be incorporated during nonribosomal peptide (NRP) biosynthesis. NRPs display a wide range of biological activities and are some of the most important drugs currently used in clinics. Traditionally, activity of adenylation domains has been measured by radioactive ATp-[P-32]pyrophosphate (PPi) exchange assays. To identify adenylation domains for future combinatorial production of novel NRPs as potential drugs, we report a convenient high-throughput nonradioactive method to measure activity of these enzymes. In our assay, malachite green is used to measure orthophosphate (P-i) concentrations after degradation by inorganic pyrophosphatase of the PPi released during aminoacyl-AMP formation by action of the adenylation domains. The assay is quantitative, accurate, and robust, and it can be performed in 96- and 384-well plate formats. The performance of our assay was tested by using NcpB-A(4), one of the seven adenylation domains involved in nostocyclopeptide biosynthesis. The kinetics of pyrophosphate release monitored by this method are much slower than those measured by a traditional ATP-[(32)p]PPi exchange assay. This observation indicates that the formation of the adenylated amino acid and its release are the rate-limiting steps during the catalytic turnover. (C) 2008 Elsevier Inc. All rights reserved.
机译:腺苷酸化域是决定非核糖体肽(NRP)生物合成过程中要掺入的氨基酸构件的身份的关键酶。 NRP具有广泛的生物活性,是目前临床上最重要的药物。传统上,腺苷酸化域的活性已通过放射性ATp- [P-32]焦磷酸盐(PPi)交换测定法进行了测量。为了鉴定腺苷酸化结构域,以便将来组合生产新型NRP作为潜在药物,我们报告了一种方便的高通量非放射性方法来测量这些酶的活性。在我们的测定中,孔雀石绿用于测量氨基磷酸盐-AMP形成过程中由于腺苷酸化域的作用而释放的PPi的无机焦磷酸酶降解后的正磷酸盐(P-i)浓度。该测定是定量,准确和耐用的,并且可以96孔板和384孔板形式进行。我们的检测性能通过使用NcpB-A(4)进行了测试,NcpB-A(4)是参与nostocyclopeptide生物合成的七个腺苷酸化域之一。通过这种方法监测的焦磷酸盐释放动力学比通过传统的ATP-[(32)p] PPi交换测定法测得的动力学慢得多。该观察结果表明,腺苷酸化氨基酸的形成及其释放是催化转化过程中的限速步骤。 (C)2008 Elsevier Inc.保留所有权利。

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