Li Z, Galley W C
Department of Chemistry, McGill University, Montreal, Quebec, Canada.
Biophys J. 1989 Aug;56(2):353-60. doi: 10.1016/S0006-3495(89)82681-5.
Phosphorescence spectroscopy on mouse myeloma IgA J539 in rigid solution at 77K revealed the type of anomalous short-lived component in the tryptophan decay originally observed with lysozyme (Churchich, J.E., 1966. Biochim. Biophys. Acta. 120:406-412) and seen in a large number of Bence Jones proteins (Longworth, J.W., C.L. McLaughlin, and A. Solomon. 1976. Biochemistry. 15:2953-2958). The decay time of the anomalous component that results from the interaction between tryptophan side chains and disulfide linkages in proteins was observed to significantly lengthen in J539 in response to binding of a galactan antigen. With hen egg-white lysozyme in which the type of fluorescence enhancement on ligand binding seen with J539 has also been observed, phosphorescence measurements revealed a similar lengthening of the decay time of the disulfide-induced anomalous component in the tryptophan decay. These perturbations are interpreted as ligand-induced changes to the tryptophan-disulfide proximities that have been shown to exist in these structures. Given the short-range nature of the disulfide perturbation (see following article) the observations suggest, in particular when combined with x-ray crystallographic data, that phosphorescence decay-time measurements of disulfide perturbations can serve as a sensitive spectroscopic indicator of subtle conformational changes in immunoglobulins and other tryptophan-disulfide containing proteins.
在77K刚性溶液中对小鼠骨髓瘤IgA J539进行磷光光谱分析,揭示了色氨酸衰变中异常短寿命成分的类型,这种成分最初是在溶菌酶中观察到的(Churchich, J.E., 1966. 《生物化学与生物物理学报》. 120:406 - 412),并且在大量本斯·琼斯蛋白中也能看到(Longworth, J.W., C.L. McLaughlin, and A. Solomon. 1976. 《生物化学》. 15:2953 - 2958)。观察到由于蛋白质中色氨酸侧链与二硫键之间的相互作用而产生的异常成分的衰变时间,在J539中因半乳聚糖抗原的结合而显著延长。对于蛋清溶菌酶,在其中也观察到了与J539中配体结合时类似的荧光增强类型,磷光测量显示色氨酸衰变中由二硫键诱导的异常成分的衰变时间也有类似的延长。这些扰动被解释为配体诱导的色氨酸 - 二硫键接近度的变化,这种变化已在这些结构中得到证实。鉴于二硫键扰动的短程性质(见下一篇文章),这些观察结果表明,特别是当与X射线晶体学数据结合时,二硫键扰动的磷光衰变时间测量可以作为免疫球蛋白和其他含色氨酸 - 二硫键蛋白质中细微构象变化的灵敏光谱指标。