Taniguchi T, de Crombrugghe B
Nucleic Acids Res. 1983 Aug 11;11(15):5165-80. doi: 10.1093/nar/11.15.5165.
We have examined the interaction site on gal DNA for the cyclic AMP receptor protein and RNA polymerase when both are present together to form a stable initiation complex at the P1 gal promoter. Substitution of the bases to the left of -60 by unrelated DNA sequences does not change the cyclic AMP concentration dependency for in vitro transcription at P1 and inhibition of P2. Although the presence of some DNA to the left of -60 appears to be needed for efficient in vitro transcription at P1, the gal sequence to the left of -60 does not provide any specific interactions for transcription initiation at P1. Similarly, efficient in vitro transcription from P2 also requires non-specific DNA sequences to the left of -60. We have also examined which bases were protected by RNA polymerase and CRP together from the action of DNAase and dimethylsulfate. Some of the interactions that take place when cAMP-CRP alone interacts with gal DNA appear to be preserved in the cAMP-CRP-RNA polymerase-gal DNA complex, suggesting that CRP occupies the same site in the DNA when it is alone or together with RNA polymerase. Our results suggest that the formation of an open complex at different promoters can result from different interaction patterns between RNA polymerase and promoter DNA.
我们研究了在P1 gal启动子处,环磷酸腺苷受体蛋白(CRP)和RNA聚合酶共同存在以形成稳定起始复合物时,它们在gal DNA上的相互作用位点。用不相关的DNA序列替换 -60左侧的碱基,不会改变P1处体外转录的环磷酸腺苷浓度依赖性以及对P2的抑制作用。尽管 -60左侧存在一些DNA似乎是P1处高效体外转录所必需的,但 -60左侧的gal序列并未为P1处的转录起始提供任何特异性相互作用。同样,从P2进行高效体外转录也需要 -60左侧的非特异性DNA序列。我们还研究了哪些碱基受到RNA聚合酶和CRP共同作用的保护,免受脱氧核糖核酸酶和硫酸二甲酯的影响。当单独的cAMP-CRP与gal DNA相互作用时发生的一些相互作用,似乎在cAMP-CRP-RNA聚合酶-gal DNA复合物中得以保留,这表明CRP单独存在或与RNA聚合酶一起时,在DNA中占据相同的位点。我们的结果表明,不同启动子处开放复合物的形成可能源于RNA聚合酶与启动子DNA之间不同的相互作用模式。