Devroede Neel, Thia-Toong Thia-Lin, Gigot Daniel, Maes Dominique, Charlier Daniel
Erfelijkheidsleer en Microbiologie, Vrije Universiteit Brussel (VUB), Pleinlaan 2, B-1050 Brussels, Belgium.
J Mol Biol. 2004 Feb 6;336(1):25-42. doi: 10.1016/j.jmb.2003.12.024.
Transcription of the carAB operon encoding the sole carbamoylphosphate synthetase of Escherichia coli proceeds from a tandem pair of promoters. P2, downstream, is repressed by arginine and the ArgR protein, whereas P1 is submitted to pyrimidine-specific regulation and as shown here to purine-specific control exerted by binding of the PurR protein to a PUR box sequence centered around nucleotide -128.5 with respect to the start of P1 transcription. In vivo analyses of the effects of trans and cis-acting mutations on the regulatory responses and single round in vitro transcription assays indicated that ligand-bound PurR is by itself unable to inhibit P1 promoter activity. To exert its effect PurR relies on the elaborated nucleoprotein complex that governs P1 activity in a pyrimidine-specific manner. Thus we reveal the existence of an unprecedented functional and structural coupling between the modulation of P1 activity by purine and pyrimidine residues that appears to result from the unique position of the PUR box in the carAB control region, far upstream of the promoter. Missing contact and premethylation binding interference studies revealed the importance of base-specific groups and of structural aspects of the PUR box sequence in complex formation. Permutation assays indicated that the overall PurR-induced bending of the carAB control region is slightly less pronounced than that of the purF operator. The PUR boxes of the carAB operon of E.coli and Salmonella typhimurium are unique in that they have a guanine residue at position eight. Interestingly, guanine at this position has been proposed to be extremely unfavorable on the basis of modeling and binding studies, as its exocyclic amino group would enter into a steric clash with the side-chain of lysine 55. To analyze the effect of guanine at position eight in the upstream half-site of the carAB operator we constructed the adenine derivative and assayed in vivo repressibility of P1 promoter activity and in vitroPurR binding to the mutant operator, and constructed a molecular model for the unusual lysine 55-guanine 8 interaction.
编码大肠杆菌唯一氨甲酰磷酸合成酶的carAB操纵子的转录由一对串联启动子起始。下游的P2启动子受精氨酸和ArgR蛋白的抑制,而P1启动子则受到嘧啶特异性调控,并且如本文所示,还受到嘌呤特异性调控,这是通过PurR蛋白与围绕P1转录起始位点核苷酸-128.5的PUR框序列结合来实现的。对反式和顺式作用突变对调控反应的影响进行的体内分析以及单轮体外转录试验表明,与配体结合的PurR本身无法抑制P1启动子活性。为了发挥其作用,PurR依赖于以嘧啶特异性方式控制P1活性的精细核蛋白复合物。因此,我们揭示了嘌呤和嘧啶残基对P1活性的调节之间存在前所未有的功能和结构耦合,这似乎是由于PUR框在carAB控制区域中的独特位置所致,该区域位于启动子的上游很远位置。缺失接触和预甲基化结合干扰研究揭示了碱基特异性基团和PUR框序列结构方面在复合物形成中的重要性。置换试验表明,PurR诱导的carAB控制区域的整体弯曲程度略低于purF操纵基因。大肠杆菌和鼠伤寒沙门氏菌的carAB操纵子的PUR框具有独特之处,即它们在第8位有一个鸟嘌呤残基。有趣的是,基于建模和结合研究,该位置的鸟嘌呤被认为是极其不利的,因为其环外氨基会与赖氨酸55的侧链发生空间冲突。为了分析carAB操纵基因上游半位点第8位鸟嘌呤的影响,我们构建了腺嘌呤衍生物,并在体内测定了P1启动子活性的可抑制性以及体外PurR与突变操纵基因的结合情况,并构建了异常的赖氨酸55 - 鸟嘌呤8相互作用的分子模型。