Wonderling L D, Stauffer G V
Department of Microbiology, The University of Iowa, Iowa City, Iowa 52242, USA.
J Bacteriol. 1999 Mar;181(6):1912-9. doi: 10.1128/JB.181.6.1912-1919.1999.
The Escherichia coli gcv operon is transcriptionally regulated by the GcvA, GcvR, Lrp, and PurR proteins. In this study, the cyclic AMP (cAMP) receptor protein (CRP) is shown to be involved in positive regulation of the gcv operon. A crp deletion reduced expression of a gcvT-lacZ fusion almost fourfold in glucose minimal (GM) medium. The phenotype was complemented by both the wild-type crp gene and four crp alleles that encode proteins with amino acid substitutions in known activating regions of CRP. A cyaA deletion also resulted in a fourfold decrease in gcvT-lacZ expression, and wild-type expression was restored by the addition of cAMP to the growth medium. A cyaA crp double deletion resulted in levels of gcvT-lacZ expression identical to those observed with either single mutation, showing that CRP and cAMP regulate through the same mechanism. Growth in GM medium plus cAMP or glycerol minimal medium did not result in a significant increase in gcvT-lacZ expression. Thus, the level of cAMP present in GM medium appears to be sufficient for regulation by CRP. DNase I footprint analysis showed that CRP binds and protects two sites centered at bp -313 (site 1) and bp -140 (site 2) relative to the transcription initiation site, but a mutational analysis demonstrated that only site 1 is required for CRP-mediated regulation of gcvT-lacZ expression. Expression of the gcvT-lacZ fusion in a crp gcvA double mutant suggested that CRP's role is dependent on the GcvA protein.
大肠杆菌的gcv操纵子受GcvA、GcvR、Lrp和PurR蛋白的转录调控。在本研究中,环腺苷酸(cAMP)受体蛋白(CRP)被证明参与了gcv操纵子的正调控。在葡萄糖基本(GM)培养基中,crp缺失使gcvT - lacZ融合基因的表达降低了近四倍。野生型crp基因和四个crp等位基因对该表型进行了互补,这四个等位基因编码的蛋白质在CRP已知的激活区域存在氨基酸替换。cyaA缺失也导致gcvT - lacZ表达降低四倍,向生长培养基中添加cAMP可恢复野生型表达。cyaA crp双缺失导致gcvT - lacZ表达水平与任一单突变时观察到的水平相同,表明CRP和cAMP通过相同机制进行调控。在GM培养基加cAMP或甘油基本培养基中生长并未导致gcvT - lacZ表达显著增加。因此,GM培养基中存在的cAMP水平似乎足以供CRP进行调控。DNase I足迹分析表明,CRP结合并保护相对于转录起始位点位于bp - 313(位点1)和bp - 140(位点2)为中心的两个位点,但突变分析表明,CRP介导的gcvT - lacZ表达调控仅需要位点1。在crp gcvA双突变体中gcvT - lacZ融合基因的表达表明,CRP的作用依赖于GcvA蛋白。