Carmona Adriana K, Juliano Maria Aparecida, Juliano Luiz
Departamento de Biofísica, Escola Paulista de Medicina, Universidade Federal de São Paulo, São Paulo, SP, Brasil.
An Acad Bras Cienc. 2009 Sep;81(3):381-92. doi: 10.1590/s0001-37652009000300005.
Proteolytic enzymes have a fundamental role in many biological processes and are associated with multiple pathological conditions. Therefore, targeting these enzymes may be important for a better understanding of their function and development of therapeutic inhibitors. Fluorescence Resonance Energy Transfer (FRET) peptides are convenient tools for the study of peptidases specificity as they allow monitoring of the reaction on a continuous basis, providing a rapid method for the determination of enzymatic activity. Hydrolysis of a peptide bond between the donor/acceptor pair generates fluorescence that permits the measurement of the activity of nanomolar concentrations of the enzyme. The assays can be performed directly in a cuvette of the fluorimeter or adapted for determinations in a 96-well fluorescence plate reader. The synthesis of FRET peptides containing ortho-aminobenzoic acid (Abz) as fluorescent group and 2, 4-dinitrophenyl (Dnp) or N-(2, 4-dinitrophenyl)ethylenediamine (EDDnp) as quencher was optimized by our group and became an important line of research at the Department of Biophysics of the Federal University of São Paulo. Recently, Abz/Dnp FRET peptide libraries were developed allowing high-throughput screening of peptidases substrate specificity. This review presents the consolidation of our research activities undertaken between 1993 and 2008 on the synthesis of peptides and study of peptidases specificities.
蛋白水解酶在许多生物过程中发挥着重要作用,并与多种病理状况相关。因此,针对这些酶进行研究对于更好地理解其功能以及开发治疗性抑制剂可能具有重要意义。荧光共振能量转移(FRET)肽是研究肽酶特异性的便捷工具,因为它们能够持续监测反应,为测定酶活性提供了一种快速方法。供体/受体对之间肽键的水解会产生荧光,从而可以测量纳摩尔浓度酶的活性。这些测定可以直接在荧光计的比色皿中进行,也可以适用于在96孔荧光酶标仪中进行测定。我们小组优化了以邻氨基苯甲酸(Abz)作为荧光基团、2,4-二硝基苯基(Dnp)或N-(2,4-二硝基苯基)乙二胺(EDDnp)作为淬灭剂的FRET肽的合成,这成为圣保罗联邦大学生物物理系的一项重要研究方向。最近,开发了Abz/Dnp FRET肽文库,可用于高通量筛选肽酶底物特异性。本综述介绍了我们在1993年至2008年期间开展的关于肽合成和肽酶特异性研究活动的总结。