Garmendia J, de Lorenzo V
Department of Microbial Biotechnology, Centro Nacional de Biotecnología CSIC, Campus de Cantoblanco, 28049 Madrid, Spain.
Mol Microbiol. 2000 Oct;38(2):401-10. doi: 10.1046/j.1365-2958.2000.02139.x.
In the presence of toluene and other structural analogues, the enhancer binding protein XylR activates the sigma54 promoter Pu of the TOL (toluene degradation) plasmid pWW0 of Pseudomonas putida. Introduction of amino acid changes Val-219Asp and Ala-220Pro, which enter a proline kink at the interdomain region (B linker) between the A (signal reception) module and the central portion of XylR, originated a protein with unforeseen properties. These included a minor ability to activate Pu in the absence of aromatic effectors, a much higher responsiveness to m-xylene and a significant response to a large collection of aromatic inducers. Such changes could not be attributed to variations in XylR expression levels or to the fortuitous creation of a novel promoter, but to a genuine change in the properties of the activator. Structural predictions suggested that the mutation entirely disrupted an otherwise probable coiled-coil structure. A second directed mutant within the same region consisting of a major replacement of amino acids A220-N221 by the peptide HHHR produced an even more exacerbated phenotype. These data support a model in which the linker B region influences the effector profile by modifying at a distance the operative shape of the effector pocket and fixing the protein in an intermediate step of the activation process.
在甲苯和其他结构类似物存在的情况下,增强子结合蛋白XylR可激活恶臭假单胞菌TOL(甲苯降解)质粒pWW0的σ54启动子Pu。引入氨基酸变化Val-219Asp和Ala-220Pro,这两个氨基酸在XylR的A(信号接收)模块与中央部分之间的结构域间区域(B连接子)引入了一个脯氨酸扭结,产生了具有意外特性的蛋白质。这些特性包括在没有芳香效应物时激活Pu的能力较弱、对间二甲苯的响应性高得多以及对大量芳香诱导剂有显著响应。这些变化不能归因于XylR表达水平的变化或偶然产生的新启动子,而是激活剂特性的真正改变。结构预测表明,该突变完全破坏了原本可能的卷曲螺旋结构。同一区域内的第二个定向突变体,由肽HHHR对氨基酸A220-N221进行主要替换,产生了更严重的表型。这些数据支持了一个模型,即连接子B区域通过远距离改变效应口袋的作用形状并将蛋白质固定在激活过程的中间步骤来影响效应物谱。