Berens C, Schnappinger D, Hillen W
Lehrstuhl für Mikrobiologie, Institut für Mikrobiologie, Biochemie und Genetik der Friedrich-Alexander Universität Erlangen-Nürnberg, Staudtstrasse 5, 91058 Erlangen, Federal Republic of Germany.
J Biol Chem. 1997 Mar 14;272(11):6936-42. doi: 10.1074/jbc.272.11.6936.
A set of deletions and substitutions to alanine was introduced into the loop separating helices alpha8 and alpha9 of Tn10 Tet repressor (TetR). This region appears as an unstructured loop in the crystal structure of the TetR(D).([Mg-tc]+)2 complex and is the only internal segment of variable length in an alignment of Tet repressors from seven different resistance determinants. In vivo analysis of 10 mutants shows that this loop is important for inducibility by tetracycline (tc), whereas DNA binding is not or only marginally affected. All deletions have an induction-deficient TetRS phenotype, but the corresponding substitutions do not or only slightly affect inducibility. The purified mutant TetR proteins have a reduced affinity for tc in vitro that correlates with their lack of inducibility. The association rate of [Mg-tc]+ to the TetR mutants is enhanced. Since none of the mutated residues contacts tc directly in the crystal structure, we propose that the length of the loop is important for the structural transition between a closed, tc binding and an open, operator binding conformation of TetR. We propose that the deletions in the loop shift the equilibrium between both forms toward the open, operator binding conformation.
在Tn10四环素阻遏物(TetR)的α8和α9螺旋之间的环中引入了一组丙氨酸缺失和替换。在TetR(D).([Mg - tc]+)2复合物的晶体结构中,该区域表现为一个无结构的环,并且是来自七个不同抗性决定簇的四环素阻遏物序列比对中唯一长度可变的内部片段。对10个突变体的体内分析表明,该环对于四环素(tc)诱导至关重要,而DNA结合不受影响或仅受到轻微影响。所有缺失突变体都具有诱导缺陷型TetRS表型,但相应的替换突变体则不然,或者仅轻微影响诱导性。纯化的突变体TetR蛋白在体外对tc的亲和力降低,这与其缺乏诱导性相关。[Mg - tc]+与TetR突变体的结合速率增强。由于在晶体结构中没有一个突变残基直接与tc接触,我们提出环的长度对于TetR从结合tc的封闭构象到结合操纵子的开放构象的结构转变很重要。我们认为环中的缺失使两种形式之间的平衡向开放的、结合操纵子的构象移动。