Gaston K, Chan B, Kolb A, Fox J, Busby S
Department of Biochemistry, University of Birmingham, U.K.
Biochem J. 1988 Aug 1;253(3):809-18. doi: 10.1042/bj2530809.
Gene manipulation techniques have been used to alter the binding site for the cyclic AMP-cyclic AMP receptor protein complex (cAMP-CRP) at the regulatory region of the Escherichia coli galactose (gal) operon. The effects of these changes on CRP-dependent stimulation of expression from the galP1 promoter in vivo have been measured, and gel binding assays have been used to measure the affinity of cAMP-CRP for the modified sites. Firstly we have deleted progressively longer sequences from upstream of the gal CRP site in order to locate the functional limit of the site. A deletion to -49, removing the first base that corresponds to the consensus sequence for a CRP binding site, is sufficient to reduce CRP binding and block CRP-dependent stimulation of P1. Secondly, we used synthetic oligonucleotides to invert the asymmetric nucleotide sequence at the gal CRP binding site or to make the sequence symmetric. Inversion of the site has little effect on CRP binding, the architecture of open complexes at P1 revealed by DNAase I footprinting, or the stimulation of transcription from P1. Making the site symmetric increases the affinity for CRP by over 50-fold and leads to increased transcription from P1, whilst hardly altering the DNAase I footprint of open complexes. Our results confirm that the strength of binding of CRP depends on the nature of the site and show that it is this that principally accounts for differences in CRP-dependent stimulation of transcription.
基因操作技术已被用于改变大肠杆菌半乳糖(gal)操纵子调控区中环磷酸腺苷 - 环磷酸腺苷受体蛋白复合物(cAMP - CRP)的结合位点。已测定了这些变化对体内galP1启动子依赖CRP的表达刺激的影响,并使用凝胶结合试验来测定cAMP - CRP对修饰位点的亲和力。首先,我们从gal CRP位点上游逐步删除更长的序列,以确定该位点的功能极限。删除至 - 49位,去除对应于CRP结合位点共有序列的第一个碱基,足以降低CRP结合并阻断P1依赖CRP的刺激。其次,我们使用合成寡核苷酸来反转gal CRP结合位点的不对称核苷酸序列或使其序列对称。该位点的反转对CRP结合、DNA酶I足迹法揭示的P1开放复合物的结构或P1转录的刺激几乎没有影响。使该位点对称会使对CRP的亲和力增加50倍以上,并导致P1转录增加,同时几乎不改变开放复合物的DNA酶I足迹。我们的结果证实CRP的结合强度取决于位点的性质,并表明这主要是导致CRP依赖的转录刺激差异的原因。