Kroes S J, Canters G W, Gilardi G, van Hoek A, Visser A J
Leiden Institute of Chemistry, Gorlaeus Laboratories, 2300 RA Leiden, The Netherlands.
Biophys J. 1998 Nov;75(5):2441-50. doi: 10.1016/S0006-3495(98)77688-X.
Time-resolved fluorescence and time resolved fluorescence anisotropy studies have been performed on wild-type azurin from Pseudomonas aeruginosa and two variants to study the mobility of Trp48. The two azurin variants in which the microenvironment of Trp48 was changed comprised the single mutations Ile7Ser and Phe110Ser. The experiments were performed on the holo-Cu(I), holo-Cu(II), and apo- forms at various pH values, viscosities, and temperatures; two distinct parts of the emission spectrum were selected for detection. Two prominent subnanosecond lifetimes in the fluorescence decays of the Cu(II) proteins could be observed. The decay of apo-azurin also consists of more than one component. The occurrence of more than one component in the fluorescence decays is explained by conformational heterogeneity. The anisotropy decay results appeared to be different for wild-type and mutated azurins. Phe110Ser and Ile7Ser azurin show more mobility of the Trp48 residue, as reflected in the order parameter.
已对来自铜绿假单胞菌的野生型天青蛋白及其两个变体进行了时间分辨荧光和时间分辨荧光各向异性研究,以研究色氨酸48(Trp48)的流动性。Trp48微环境发生变化的两个天青蛋白变体包括单突变体异亮氨酸7突变为丝氨酸(Ile7Ser)和苯丙氨酸110突变为丝氨酸(Phe110Ser)。实验在不同pH值、粘度和温度下对全铜(I)、全铜(II)和脱辅基形式进行;选择发射光谱的两个不同部分进行检测。在铜(II)蛋白的荧光衰减中可以观察到两个显著的亚纳秒寿命。脱辅基天青蛋白的衰减也由多个成分组成。荧光衰减中出现多个成分是由构象异质性解释的。野生型和突变型天青蛋白的各向异性衰减结果似乎不同。Phe110Ser和Ile7Ser天青蛋白显示出Trp48残基具有更高的流动性,这在序参中得到体现。