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Zn(II)-Coordinated Quantum Dot-FRET Nanosensors for the Detection of Protein Kinase Activity

机译:Zn(II)配位的量子点-FRET纳米传感器用于检测蛋白激酶活性

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摘要

We report a simple detection of protein kinase activity using Zn(II)-mediated fluorescent resonance energy transfer (FRET) between quantum dots (QDs) and dye-tethered peptides. With neither complex chemical ligands nor surface modification of QDs, Zn(II) was the only metal ion that enabled the phosphorylated peptides to be strongly attached on the carboxyl groups of the QD surface via metal coordination, thus leading to a significant FRET efficiency. As a result, protein kinase activity in intermixed solution was efficiently detected by QD-FRET via Zn(II) coordination, especially when the peptide substrate was combined with affinity-based purification. We also found that mono- and di-phosphorylation in the peptide substrate could be discriminated by the Zn(II)-mediated QD-FRET. Our approach is expected to find applications for studying physiological function and signal transduction with respect to protein kinase activity.
机译:我们报告一个简单的检测蛋白激酶活性使用量子点(QDs)和染料拴肽之间的Zn(II)介导的荧光共振能量转移(FRET)。 Zn(II)既不具有复杂的化学配体也不具有QD的表面修饰,是唯一使磷酸化的肽能够通过金属配位牢固地附着在QD表面的羧基上的金属离子,从而显着提高了FRET效率。结果,尤其是当肽底物与基于亲和力的纯化方法结合使用时,通过QD-FRET通过Zn(II)配位可有效检测混合溶液中的蛋白激酶活性。我们还发现,肽底物中的单磷酸化和双磷酸化可以通过Zn(II)介导的QD-FRET进行区分。预期我们的方法将找到用于研究有关蛋白激酶活性的生理功能和信号转导的应用。

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