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在用于腹泻性贝类毒素(DSP)的荧光微孔板测定中,将9H-(1,3-二氯-9,9-二甲基吖啶-2-酮-7-基)-磷酸酯(DDAO)表征为PP-2A的底物。

Characterization of 9H-(1,3-dichlor-9, 9-dimethylacridin-2-ona-7-yl)-phosphate (DDAO) as substrate of PP-2A in a fluorimetric microplate assay for diarrhetic shellfish toxins (DSP).

作者信息

Leira F, Vieites J M, Vieytes M R, Botana L M

机构信息

ANFACO-CECOPESCA, Campus Universitario de Vigo, Spain.

出版信息

Toxicon. 2000 Dec;38(12):1833-44. doi: 10.1016/s0041-0101(00)00111-2.

DOI:10.1016/s0041-0101(00)00111-2
PMID:10858520
Abstract

Specific inhibition of protein-phosphatases by diarrhetic shellfish toxins (DSP) of the okadaic acid group, has led to the development of a fluorescent enzyme inhibition assay for these toxins using protein-phosphatase 2A (PP-2A) and fluorogenic substrates of the enzyme. Two different substrates of PP-2A have been previously used in this microplate assay: 4-methylumbelliferyl phosphate and fluorescein diphosphate (FDP). In this report, we present the results obtained using a new fluorogenic substrate of PP-2A, the compound dimethylacridinone phosphate (DDAO). A linear relationship between PP-2A concentration and DDAO-induced fluorescence was observed. Okadaic acid (0.0157-9.43 nM)-dependent inhibition of phosphatase activity showed similar results using FDP and DDAO. Recovery percentages obtained with FDP and DDAO in spiked mussel samples (both raw and canned) were very similar and reproducible. Comparative analysis of DSP-contaminated mussel samples by HPLC and FDP/DDAO-PP-2A showed a good correlation among all methods, thus demonstrating that DDAO can be used as a fluorogenic substrate to quantify okadaic acid and related toxins in bivalve molluscs with optimum reliability.

摘要

冈田酸类腹泻性贝类毒素(DSP)对蛋白磷酸酶的特异性抑制作用,促使人们开发出一种利用蛋白磷酸酶2A(PP - 2A)和该酶的荧光底物来检测这些毒素的荧光酶抑制试验。在此微孔板试验中,此前已使用过两种不同的PP - 2A底物:4 - 甲基伞形磷酸酯和荧光素二磷酸酯(FDP)。在本报告中,我们展示了使用PP - 2A的一种新型荧光底物——磷酸二甲基吖啶酮(DDAO)所获得的结果。观察到PP - 2A浓度与DDAO诱导的荧光之间呈线性关系。使用FDP和DDAO时,冈田酸(0.0157 - 9.43 nM)对磷酸酶活性的依赖性抑制呈现出相似的结果。在加标贻贝样品(生的和罐装的)中,使用FDP和DDAO获得的回收率非常相似且具有可重复性。通过高效液相色谱法(HPLC)以及FDP/DDAO - PP - 2A对受DSP污染的贻贝样品进行的对比分析表明,所有方法之间具有良好的相关性,从而证明DDAO可作为一种荧光底物,以最佳的可靠性对双壳贝类中的冈田酸及相关毒素进行定量分析。

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