Pyles E A, Lee J C
Department of Human Biological Chemistry and Genetics, The University of Texas Medical Branch, Galveston, Texas 77555-1055, USA.
Biochemistry. 1998 Apr 14;37(15):5201-10. doi: 10.1021/bi972451a.
The effect of DNA sequence variability and the degree of cyclic AMP receptor protein (CRP)-induced bending of the flanking ends of fluorescently labeled DNA were investigated by steady-state fluorescence and differential phase polarization studies in the presence and absence of CRP. Six sequences, including the primary CRP binding sites of lac P1 (class I) and gal P1 (class II), were studied. Excitation and emission spectra of CPM-DNA upon binding CRP were observed to be qualitatively similar to one another, regardless of the CRP binding site sequence examined or the location of the probe. This result implies that the probe is not interacting with the protein. However, the magnitude of the changes in the fluorescence intensities of sensitized emission spectra of CPM-DNA is apparently dependent on the DNA sequence, indicating that the environments of the flanking ends of DNA may be different from one another in the protein-DNA complex. Differential phase polarization results were qualitatively consistent with the fluorescence energy transfer measurements. The implication of this study supports the idea that the DNA is bent symmetrically in the lac-CRP complex but is asymmetrically bent in the gal-CRP complex. The sequence in the half-site in conjunction with the flanking sequence defines the geometry of the bent DNA. It appears that the CRP-induced bend in the DNA may also be class dependent. This may be an important feature used by the system to regulate transcription at different promoter sites.
通过在有无环磷酸腺苷受体蛋白(CRP)的情况下进行稳态荧光和微分相偏振研究,探究了DNA序列变异性以及CRP诱导的荧光标记DNA侧翼末端弯曲程度的影响。研究了六个序列,包括乳糖操纵子P1(I类)和半乳糖操纵子P1(II类)的主要CRP结合位点。观察到结合CRP后CPM-DNA的激发光谱和发射光谱在定性上彼此相似,无论所检测的CRP结合位点序列如何或探针的位置如何。该结果表明探针与蛋白质不相互作用。然而,CPM-DNA敏化发射光谱的荧光强度变化幅度显然取决于DNA序列,这表明在蛋白质-DNA复合物中DNA侧翼末端的环境可能彼此不同。微分相偏振结果在定性上与荧光能量转移测量结果一致。这项研究的意义支持了这样一种观点,即DNA在乳糖-CRP复合物中对称弯曲,但在半乳糖-CRP复合物中不对称弯曲。半位点中的序列与侧翼序列共同决定了弯曲DNA的几何形状。看来CRP诱导的DNA弯曲也可能与类别有关。这可能是该系统在不同启动子位点调节转录所使用的一个重要特征。