Development of novel assays for proteolytic enzymes using rhodarnine-based fluorogenic substrates

被引:53
作者
Grant, SK
Sklar, JG
Cummings, RT
机构
[1] Merck & Co Inc, Dept Human & Anim Infect Dis Res, Rahway, NJ USA
[2] Merck & Co Inc, Dept Mol Design & Divers, Rahway, NJ USA
关键词
D O I
10.1177/1087057102238627
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Components within synthetic chemical and natural product extract libraries often interfere with fluorescence-based assays. Fluorescence interference can result when the intrinsic spectral properties of colored compounds overlap with the fluorescent probes. Topically, fluorescence-based protease assays use peptide amidomethylcoumarin derivatives as substrates. However, because many organic compounds absorb in the ultraviolet region, they can interfere with coumarin-based fluorescence assays. Red-shifted fluorescent dyes such as peptidyl rhodamine derivatives are useful because there is generally less interference from organic compounds outside the ultraviolet wavelengths. In this report, rhodamine-based fluorogenic substrates, such as bis-(Leu)(2)-Rhod110 and bis-(Ala-Pro)(2)-Rhod110, were developed for leucine aminopeptidase and dipeptidyl aminopeptidase. Novel, tandem rhodamine substrates such as Ala-Pro-Rhod110-Leu were designed with 2 protease cleavage sites and used to assay 2 proteases in a multiplex format. General endpoint high-throughput screening (HTS) assays were also developed for leucine aminopeptidase, dipeptidyl aminopeptidase, and trypsin that incorporated both amidomethylcoumarin and rhodamine-based fluorogenic substrates into a single screening format. These dual-substrate assays allowed for the successful screening of the LOPAC(TM) collection and natural product extracts despite high levels of fluorescence interference.
引用
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页码:531 / 540
页数:10
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