Guazzaroni María-Eugenia, Krell Tino, Gutiérrez del Arroyo Paloma, Vélez Marisela, Jiménez Mercedes, Rivas Germán, Ramos Juan L
Consejo Superior de Investigaciones Científicas, Estación Experimental del Zaidín, Department of Environmental Protection, Granada, Spain.
J Mol Biol. 2007 Jun 15;369(4):927-39. doi: 10.1016/j.jmb.2007.04.022. Epub 2007 Apr 14.
The TtgV repressor belongs to the large but infrequently investigated IclR family of transcriptional regulators. Although members of this family usually exhibit high effector specificity, TtgV possesses multidrug binding properties. The TtgV protein regulates the expression of the ttgGHI operon encoding the main solvent extrusion pump of the extremophile Pseudomonas putida DOT-T1E strain. Here we used a multidisciplinary approach to study the functional oligomeric state of TtgV during repression and derepression events, as well as the molecular basis of TtgV-DNA operator interactions. Analytical ultracentrifugation studies (AUC) show that TtgV is a tetramer in solution and that this oligomeric state does not change in the presence of effectors. We also show that the binding of effectors leads to the dissociation of TtgV as a tetramer from the DNA-TtgV complex. Previous dimethyl sulfate and DNase I footprints revealed that TtgV protected a 42 bp region. Based on AUC, electrophorectic mobility shift assays and isothermal titration calorimetry analyses we show that TtgV recognition specificity is restricted within this operator to a 34-nucleotide stretch and that TtgV may interact with intercalated inverted repeats that share no significant DNA sequence similarities within this short 34-nucleotide segment. Binding stoichiometry is one TtgV tetramer per operator, and affinity for its target DNA is around 200 nM. Circular dichroism analysis reveals that TtgV binding causes DNA distortion and atomic force microscopy imaging of TtgV-DNA operator complexes shows that TtgV induces a 57 degrees convex bend in its operator DNA. We propose that the mechanism of TtgV repression is based on the steric occlusion of the RNA polymerase binding site reinforced by DNA-bending of the ttgV-ttgG promoter region.
TtgV阻遏蛋白属于转录调节因子中庞大但研究较少的IclR家族。尽管该家族成员通常表现出高效应物特异性,但TtgV具有多药结合特性。TtgV蛋白调控编码嗜极端微生物恶臭假单胞菌DOT-T1E菌株主要溶剂外排泵的ttgGHI操纵子的表达。在此,我们采用多学科方法研究TtgV在阻遏和去阻遏事件期间的功能性寡聚状态,以及TtgV与DNA操纵子相互作用的分子基础。分析型超速离心研究(AUC)表明,TtgV在溶液中是四聚体,且这种寡聚状态在效应物存在时不会改变。我们还表明,效应物的结合导致作为四聚体的TtgV从DNA-TtgV复合物中解离。先前的硫酸二甲酯和DNase I足迹分析表明,TtgV保护一个42 bp的区域。基于AUC、电泳迁移率变动分析和等温滴定量热分析,我们表明TtgV的识别特异性在该操纵子内限于一段34个核苷酸的片段,并且TtgV可能与在这一短的34个核苷酸片段内无明显DNA序列相似性的插入反向重复序列相互作用。结合化学计量为每个操纵子一个TtgV四聚体,其对靶DNA的亲和力约为200 nM。圆二色性分析表明,TtgV的结合导致DNA扭曲,TtgV-DNA操纵子复合物原子力显微镜成像显示,TtgV在其操纵子DNA中诱导57度的凸形弯曲。我们提出,TtgV阻遏机制基于ttgV-ttgG启动子区域的DNA弯曲加强的RNA聚合酶结合位点的空间位阻。