首页> 外文期刊>The Biochemical Journal >Measurement of proteases using chemiluminescence-resonance-energy-transfer chimaeras between green fluorescent protein and aequorin.
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Measurement of proteases using chemiluminescence-resonance-energy-transfer chimaeras between green fluorescent protein and aequorin.

机译:使用绿色荧光蛋白和水母发光蛋白之间的化学发光-共振-能量转移嵌合体测量蛋白酶。

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Homogeneous assays, without a separation step, are essential for measuring chemical events in live cells and for drug discovery screens, and are desirable for making measurements in cell extracts or clinical samples. Here we demonstrate the principle of chemiluminescence resonance energy transfer (CRET) as a homogeneous assay system, using two proteases as models, one extracellular (alpha-thrombin) and the other intracellular (caspase-3). Chimaeras were engineered with aequorin as the chemiluminescent energy donor and green fluorescent protein (GFP) or enhanced GFP as the energy acceptors, with a protease linker (6 or 18 amino acid residues) recognition site between the donor and acceptor. Flash chemiluminescent spectra (20--60 s) showed that the spectra of chimaeras matched GFP, being similar to that of luminous jellyfish, justifying their designation as 'Rainbow' proteins. Addition of the protease shifted the emission spectrum to that of aequorin in a time- and dose-dependent manner. Separation of the proteolysed fragments showed that the ratio of green to blue light matched the extent of proteolysis. The caspase-3 Rainbow protein was able to provide information on the specificity of caspases in vitro and in vivo. It was also able to monitor caspase-3 activation in cells provoked into apoptosis by staurosporine (1 or 2 microM). CRET can also monitor GFP fluor formation. The signal-to-noise ratio of our Rainbow proteins is superior to that of fluorescence resonance energy transfer, providing a potential platform for measuring agents that interact with the reactive site between the donor and acceptor.
机译:没有分离步骤的均相测定对于测量活细胞中的化学事件和药物发现筛选必不可少,并且对于在细胞提取物或临床样品中进行测量也是理想的。在这里,我们展示了化学发光共振能量转移(CRET)作为均质测定系统的原理,使用两种蛋白酶作为模型,一种是细胞外(α-凝血酶),另一种是细胞内(caspase-3)。 Chimaeras经过工程改造,以水母发光蛋白作为化学发光能量供体,绿色荧光蛋白(GFP)或增强型GFP作为能量受体,在供体和受体之间具有蛋白酶接头(6个或18个氨基酸残基)识别位点。闪光化学发光光谱(20--60 s)表明,嵌合体的光谱与GFP相匹配,类似于发光的水母,证明它们被命名为“彩虹”蛋白。蛋白酶的添加以时间和剂量依赖性方式将发射光谱转变为水母发光蛋白的发射光谱。蛋白水解片段的分离显示绿光与蓝光的比例与蛋白水解的程度相匹配。 caspase-3 Rainbow蛋白能够提供有关胱天蛋白酶在体外和体内特异性的信息。它还能够监测星形孢菌素(1或2 microM)引起的细胞凋亡中caspase-3的活化。 CRET还可以监测GFP荧光的形成。我们的Rainbow蛋白的信噪比优于荧光共振能量转移,为测量与供体和受体之间的反应位点相互作用的试剂提供了一个潜在的平台。

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