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Investigation of trypsin-CdSe quantum dot interactions via spectroscopic methods and effects on enzymatic activity

机译:通过光谱方法研究胰蛋白酶-CdSe量子点相互作用及其对酶活性的影响

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The paper presents the interactions between trypsin and water soluble cadmium selenide (CdSe) quantum dots investigated by spectrophotometric methods. CdSe quantum dots have strong ability to quench the intrinsic fluorescence of trypsin by a static quenching mechanism. The quenching has been studied at three different temperatures where the results revealed that electrostatic interactions exist between CdSe quantum dots and trypsin and are responsible to stabilize the complex. The Scatchard plot from quenching revealed 1 binding site for quantum dots by tlypsin, the same has been confirmed by making isothermal titrations of quantum dots against trypsin. The distance between donor and acceptor for trypsin-CdSe quantum dot complexes is calculated to be 2.8 nm by energy transfer mechanisms. The intrinsic fluorescence of CdSe quantum dots has also been enhanced by the trypsin, and is linear for concentration of trypsin ranging 1-80 mu I. All the observations evidence the formation of trypsin-CdSe quantum dot conjugates, where trypsin retains the enzymatic activity which in turn is temperature and pH dependent. (C) 2014 Elsevier B.V. All rights reserved.
机译:通过分光光度法研究了胰蛋白酶和水溶性硒化镉(CdSe)量子点之间的相互作用。 CdSe量子点具有通过静态猝灭机制猝灭胰蛋白酶固有荧光的强大能力。已经在三种不同的温度下研究了猝灭,结果表明,CdSe量子点和胰蛋白酶之间存在静电相互作用,并且可以稳定该配合物。淬灭的斯卡查德图揭示了胰蛋白酶对量子点的1个结合位点,通过对胰蛋白酶对量子点进行等温滴定可以证实这一点。胰蛋白酶-CdSe量子点络合物的供体和受体之间的距离通过能量转移机制计算为2.8 nm。胰蛋白酶还增强了CdSe量子点的固有荧光,并且对于浓度为1-80μI的胰蛋白酶呈线性关系。所有观察结果都证明了胰蛋白酶-CdSe量子点缀合物的形成,其中胰蛋白酶保留了酶活性,进而取决于温度和pH值。 (C)2014 Elsevier B.V.保留所有权利。

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