Department of Physics and Optical Science, Center for Biomedical Engineering & Science, The University of North Carolina, Charlotte, North Carolina 28223, United States.
J Phys Chem Lett. 2021 Mar 25;12(11):2865-2870. doi: 10.1021/acs.jpclett.1c00222. Epub 2021 Mar 15.
We examined the static and dynamic characters of the red luminescence in the protein-Au(III) compounds, directly comparing multiple proteins: BSA, OVA, trypsin, and insulin. These four protein-Au(III) complexes showed a nearly identical excitation-emission pattern, not only the wavelength of luminescence (λ ∼ 640 nm). Lifetimes of the red luminescence shared a common value of ∼300 ns. Kinetics of the luminophore formation was consistently described by a Langmuir-type chemisorption of Au(III) for these proteins, coinciding with the protein conformation change at pH ∼ 10. These observations and the protein structural analyses support that the red luminophore formation involves Au(III) coordination to a common motif within these proteins.
我们研究了蛋白-Au(III)化合物中红色发光的静态和动态特性,直接比较了多种蛋白质:BSA、OVA、胰蛋白酶和胰岛素。这四种蛋白-Au(III)复合物表现出几乎相同的激发-发射模式,不仅发光波长(λ∼640nm)相同。红色发光的寿命也具有相同的约 300ns 值。发光体形成的动力学也可以通过 Au(III)对这些蛋白质的 Langmuir 型化学吸附来一致描述,这与 pH∼10 时蛋白质构象的变化一致。这些观察结果和蛋白质结构分析支持红色发光体的形成涉及 Au(III)与这些蛋白质中常见的基序的配位。