Wissmann A, Baumeister R, Müller G, Hecht B, Helbl V, Pfleiderer K, Hillen W
Lehrstuhl für Mikrobiologie, Friedrich-Alexander Universität Erlangen-Nürnberg, FRG.
EMBO J. 1991 Dec;10(13):4145-52. doi: 10.1002/j.1460-2075.1991.tb04992.x.
Each of 22 amino acids in the proposed alpha-helix-turn-alpha-helix operator binding motif of the Tn10 encoded Tet repressor was replaced by alanine and one residue was replaced by valine to determine their role in tet operator recognition by a 'loss of contact' analysis with 16 operator variants. One class of amino acids consisting of T27 and R28 in the first alpha-helix and L41, Y42, W43 and H44 in the recognition alpha-helix are quantitatively most important for wild-type operator binding. These residues are probably involved in the structural architecture of the motif. A second class of residues is quantitatively less important for binding, but determines specificity by forming base pair specific contacts to three positions in tet operator. This property is most clearly demonstrated for Q38 and P39 and to a lesser extent for T40 at the N-terminus of the recognition alpha-helix. The contacted operator base pairs indicate that the N-terminus of the recognition alpha-helix is located towards the palindromic center in the repressor-operator complex. Although the orientation of the recognition alpha-helix in the Tet repressor-tet operator complex is inversed as compared with the lambda- and 434 repressor-operator complexes, the reduced operator binding of the TA27 mutation in the first alpha-helix suggests that the hydrogen bonding networks connecting the two alpha-helices may be similar in these proteins.(ABSTRACT TRUNCATED AT 250 WORDS)
在Tn10编码的四环素阻遏物中,对所提出的α-螺旋-转角-α-螺旋操纵子结合基序中的22种氨基酸分别用丙氨酸进行替换,并将其中一个残基替换为缬氨酸,通过与16种操纵子变体进行“接触丧失”分析,以确定它们在四环素操纵子识别中的作用。第一类氨基酸包括第一个α-螺旋中的T27和R28以及识别α-螺旋中的L41、Y42、W43和H44,对野生型操纵子结合在数量上最为重要。这些残基可能参与了该基序的结构架构。第二类残基对结合在数量上不太重要,但通过与四环素操纵子中的三个位置形成碱基对特异性接触来决定特异性。这种特性在识别α-螺旋N端的Q38和P39上最为明显,在T40上程度稍小。所接触的操纵子碱基对表明,在阻遏物-操纵子复合物中,识别α-螺旋的N端朝向回文中心。尽管与λ和434阻遏物-操纵子复合物相比,四环素阻遏物-四环素操纵子复合物中识别α-螺旋的方向相反,但第一个α-螺旋中TA27突变导致的操纵子结合减少表明,这些蛋白质中连接两个α-螺旋的氢键网络可能相似。(摘要截断于250字)