Shingler V, Pavel H
Department of Cell and Molecular Biology, Umeå University, Sweden.
Mol Microbiol. 1995 Aug;17(3):505-13. doi: 10.1111/j.1365-2958.1995.mmi_17030505.x.
The NtrC-like regulator DmpR controls transcription from the dmp operon that encodes the enzymes for catabolism of phenol and some related aromatic compounds. DmpR activates transcription from the sigma 54-dependent dmp-operon promoter in the presence of pathway substrates or structural analogues in the growth medium. Using affinity-purified DmpR and a truncated derivative, we show here that aromatic compounds directly activate the ATPase activity of this protein in vitro, and that the amino-terminal domain represses this activity in the absence of an aromatic ligand. In order to dissect the activation process, derivatives of DmpR exhibiting single amino acid changes were isolated and their effector-dependence and specificity profiles were analysed in vivo. The mechanistic implications of the phenotypes of these mutants are discussed.
类NtrC调节因子DmpR控制dmp操纵子的转录,该操纵子编码用于苯酚及一些相关芳香族化合物分解代谢的酶。在生长培养基中存在途径底物或结构类似物的情况下,DmpR可激活依赖于σ54的dmp操纵子启动子的转录。利用亲和纯化的DmpR及其截短衍生物,我们在此表明,芳香族化合物在体外可直接激活该蛋白的ATP酶活性,并且在没有芳香配体的情况下,氨基末端结构域可抑制这种活性。为了剖析激活过程,分离出了表现出单个氨基酸变化的DmpR衍生物,并在体内分析了它们的效应物依赖性和特异性谱。讨论了这些突变体表型的机制意义。