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Photoinduced electron transfer (PET)-probes for the study of enzyme activity at the ensemble and single molecule level

机译:光抑制电子转移(PET) - 用于在集合和单分子水平上研究酶活性的研究

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Fluorescence based enzyme analysis is commonly done by FRET-probes, natural enzyme substrates flanked by two corresponding fluorophores, showing spectral changes upon distance variations between the fluorophores. However, the use of double labeled substrates displays several limitations such as reduction of sensitivity and high background signal accompanied by high costs for synthesis. Therefore, the development of new probes avoiding these factors is of general interest in enzyme research. A promising approach represents smart probes, i.e. singly labeled quenched enzyme substrates that increase fluorescence intensity upon enzymatic cleavage. Smart probes use the fact that certain rhodamine and oxazine dyes are selectively quenched upon contact formation with guanine or tryptophan residues via photoinduced electron transfer (PET). The rapid response time of the probes enables real-time monitoring of enzyme activity in ensemble as well as in single molecule measurements, which is an important prerequisite for the improved understanding of enzyme mechanisms. We present the design of smart probes for the detection of the two hydrolases, DNaseI and Carboxypeptidase A (CPA) with respect to stability and substrate specificity in ensemble measurements. Furthermore, we investigate the influence of the attached fluorophore on hydrolysis efficiency in case of CPA and demonstrate first applications of smart probes in single enzyme experiments.
机译:基于荧光的酶分析通常通过FRET探针,由两个相应的荧光团侧翼的天然酶底物进行,显示荧光团之间的距离变化的光谱变化。然而,使用双标记的基板显示若干限制,例如减少灵敏度和高背景信号,伴随合成的高成本。因此,避免这些因素的新探针的发展是酶研究的一般兴趣。一个有希望的方法代表智能探针,即单标记的淬火酶底物,其在酶促切割时增加荧光强度。智能探针利用通过光导电子转移(PET)在与鸟嘌呤或色氨酸残留的接触形成时选择性地淬灭某些罗丹明和恶唑染料的事实。探针的快速响应时间使得能够在集合中的酶活性以及单分子测量中的实时监测,这是改善对酶机制的理解的重要前提。我们介绍了在集合测量中的稳定性和底物特异性检测两种水解酶,DNA酶和羧肽酶A(CPA)的智能探针的设计。此外,在CPA的情况下,研究了附着荧光团对水解效率的影响,并证明了在单一酶实验中的智能探针的首次应用。

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