Sang B C, Gray D M
Program in Molecular and Cell Biology, University of Texas, Dallas, Richardson 75083-0688.
Biochemistry. 1989 Nov 28;28(24):9502-7. doi: 10.1021/bi00450a038.
Circular dichroism (CD) measurements were made on both fd and IKe gene 5 proteins in solution. The difference between the CD spectra of these two proteins was interpreted as being the result of an enhanced tyrosine contribution in the IKe gene 5 protein spectrum. There was no spectral evidence for significant alpha-helical structures in either of the two gene 5 proteins. CD measurements were also made on complexes of the two gene 5 proteins with poly(rA). The long-wavelength region (300-250 nm) of the CD spectra of both complexes was essentially like that of free poly(rA) at a high temperature. With the assumption that the poly(rA) components of the complexes had the same CD at all wavelengths as did free poly(rA) at a high temperature, it was possible to separate the CD spectra of the complexes into protein and nucleic acid components. Except for the tyrosine CD band at 229 nm, there were no significant changes in the CD bands of either protein upon binding to poly(rA). Thus, each protein appeared to maintain essentially the same overall secondary conformation when complexed with poly(rA) as when in its free state.
对溶液中的fd和IKe基因5蛋白进行了圆二色性(CD)测量。这两种蛋白质的CD光谱差异被解释为IKe基因5蛋白光谱中酪氨酸贡献增强的结果。没有光谱证据表明这两种基因5蛋白中的任何一种具有显著的α-螺旋结构。还对这两种基因5蛋白与聚(rA)的复合物进行了CD测量。两种复合物的CD光谱的长波长区域(300 - 250 nm)在高温下基本上与游离聚(rA)的相似。假设复合物中的聚(rA)成分在所有波长下的CD与高温下的游离聚(rA)相同,就有可能将复合物的CD光谱分离为蛋白质和核酸成分。除了229 nm处的酪氨酸CD带外,两种蛋白质与聚(rA)结合后,其CD带均无显著变化。因此,与游离状态相比,每种蛋白质在与聚(rA)复合时似乎都保持基本相同的整体二级构象。