Mulligan M E, Brosius J, McClure W R
J Biol Chem. 1985 Mar 25;260(6):3529-38.
We describe the characterization in vitro of three hybrid trp-lacUV5 (TAC) promoters, which have perfect homology to the -10 and -35 Escherichia coli promoter consensus hexamer sequences, but which differ in the distance between the -10 and -35 regions. The three promoters, TAC16, TAC17, and TAC18 have spacings of 16, 17, and 18 base pairs, respectively. We have measured KB and k2, the constants that describe the formation of open complexes, on these three promoters. We have also measured their relative strengths on supercoiled plasmid DNA. Our results show that these are the strongest promoters that have been characterized in vitro so far and confirm the hypothesis that the consensus promoter sequence is "best." We find the TAC17 promoter (KBk2 = 8.4 X 10(7) M-1 s-1) to be stronger than either the TAC16 (KBk2 approximately 1.5 X 10(7) M-1 s-1) or TAC18 (KBk2 approximately 3.5 X 10(7) M-1 s-1) promoters, a result that is in agreement with other findings on the effect of spacer length. The choice of start point for transcription is affected by spacer length. Transcription from all the promoters was stimulated at moderate concentrations of salt (less than 150 mM) and persisted at high salt concentrations (300 mM).
我们描述了三种杂合trp-lacUV5(TAC)启动子的体外特性,它们与大肠杆菌启动子的-10和-35共有六聚体序列具有完全同源性,但-10和-35区域之间的距离不同。这三种启动子,TAC16、TAC17和TAC18的间隔分别为16、17和18个碱基对。我们测量了这三种启动子上描述开放复合物形成的常数KB和k2。我们还测量了它们在超螺旋质粒DNA上的相对强度。我们的结果表明,这些是迄今为止体外鉴定出的最强启动子,并证实了共有启动子序列是“最佳”的这一假设。我们发现TAC17启动子(KBk2 = 8.4×10⁷ M⁻¹ s⁻¹)比TAC16(KBk2约为1.5×10⁷ M⁻¹ s⁻¹)或TAC18(KBk2约为3.5×10⁷ M⁻¹ s⁻¹)启动子更强,这一结果与关于间隔长度影响的其他研究结果一致。转录起始点的选择受间隔长度影响。在中等盐浓度(小于150 mM)下,所有启动子的转录均受到刺激,并且在高盐浓度(300 mM)下仍持续进行。