Zhou Y, Pendergrast P S, Bell A, Williams R, Busby S, Ebright R H
Department of Chemistry, Rutgers University, New Brunswick, NJ 08855.
EMBO J. 1994 Oct 3;13(19):4549-57. doi: 10.1002/j.1460-2075.1994.tb06776.x.
In Class I CAP-dependent promoters, the DNA site for CAP is located upstream of the DNA site for RNA polymerase. In Class II CAP-dependent promoters, the DNA site for CAP overlaps the DNA site for RNA polymerase, replacing the -35 site. We have used an 'oriented heterodimers' approach to identify the functional subunit of CAP at two Class I promoters having different distances between the DNA sites for CAP and RNA polymerase [CC(-61.5) and CC(-72.5)] and at one Class II promoter [CC(-41.5)]. Our results indicate that transcription activation at Class I promoters, irrespective of the distance between the DNA sites for CAP and RNA polymerase, requires the activating region of the promoter-proximal subunit of CAP. In striking contrast, our results indicate that transcription activation at Class II promoters requires the activating region of the promoter-distal subunit of CAP.
在I类依赖CAP的启动子中,CAP的DNA结合位点位于RNA聚合酶的DNA结合位点上游。在II类依赖CAP的启动子中,CAP的DNA结合位点与RNA聚合酶的DNA结合位点重叠,取代了-35位点。我们采用“定向异二聚体”方法,在CAP和RNA聚合酶的DNA结合位点之间距离不同的两个I类启动子[CC(-61.5)和CC(-72.5)]以及一个II类启动子[CC(-41.5)]上鉴定CAP的功能亚基。我们的结果表明,在I类启动子上的转录激活,无论CAP和RNA聚合酶的DNA结合位点之间的距离如何,都需要CAP启动子近端亚基的激活区域。与之形成鲜明对比的是,我们的结果表明,II类启动子上的转录激活需要CAP启动子远端亚基的激活区域。