Yamamoto Kaneyoshi, Ishihama Akira
Department of Molecular Genetics, National Institute of Genetics, Mishima, Shizuoka 411-8504, Japan.
Mol Microbiol. 2003 Jan;47(1):183-94. doi: 10.1046/j.1365-2958.2003.03287.x.
IclR is a repressor for the Escherichia coli aceBAK operon, which encodes isocitrate lyase (aceB), malate synthase (aceA) and isocitrate dehydroge-nase kinase/phosphorylase (aceK) in the glyoxylate bypass. IclR also represses the expression of iclR in an autogenous manner. DNase I footprinting and in vitro transcription assays indicated that IclR binds to an IclR box (-21 to +14), which overlaps the iclR promoter and thus competes with the RNA polymerase for DNA binding, leading to transcription repression. In the case of the aceBAK operon, IclR binds to IclR box II between -52 and -19 of the aceB promoter and interferes with binding of the RNA polymerase to this promoter. A secondary IclR binding site (IclR box I) was identified between -125 and -99 of the aceB promoter. IclR binds to this IclR box I even after formation of the aceB promoter open complex and, moreover, induces disassembly of the open complex, leading to repression of aceB transcription. In parallel, the location of the C-terminal domain of the RNA polymerase alpha subunit (alphaCTD) on DNA is shifted close to the IclR box I, indicating that direct interaction between the alphaCTD and the IclR box I-associated IclR caused the repression.
IclR是大肠杆菌aceBAK操纵子的阻遏物,该操纵子在乙醛酸循环支路中编码异柠檬酸裂解酶(aceB)、苹果酸合酶(aceA)和异柠檬酸脱氢酶激酶/磷酸酶(aceK)。IclR还以自体方式抑制iclR的表达。DNA酶I足迹法和体外转录分析表明,IclR与一个IclR框(-21至+14)结合,该框与iclR启动子重叠,因此与RNA聚合酶竞争DNA结合,导致转录抑制。对于aceBAK操纵子,IclR与aceB启动子-52至-19之间的IclR框II结合,并干扰RNA聚合酶与该启动子的结合。在aceB启动子的-125至-99之间鉴定出一个二级IclR结合位点(IclR框I)。即使在aceB启动子开放复合物形成后,IclR仍与这个IclR框I结合,此外,还诱导开放复合物的解体,导致aceB转录的抑制。同时,RNA聚合酶α亚基的C末端结构域(αCTD)在DNA上的位置移至靠近IclR框I的位置,这表明αCTD与IclR框I相关的IclR之间的直接相互作用导致了抑制作用。