Klock G, Unger B, Gatz C, Hillen W, Altenbuchner J, Schmid K, Schmitt R
J Bacteriol. 1985 Jan;161(1):326-32. doi: 10.1128/jb.161.1.326-332.1985.
Homologous and heterologous repressor-operator interactions among four different classes of tetracycline resistance determinants have been compared. These are represented by RP1/Tn1721 (class A), R222/Tn10 (class B), pSC101/pBR322 (class C), and RA1 (class D). By the use of the purified repressor proteins of class A (TetRA) and class B (TetRB), operator sequences of all four classes are recognized by both with an identical stoichiometry of four repressor subunits per control sequence, but with different affinities. In vitro transcription has been used to demonstrate regulatory activities of TetRA and TetRB upon all four classes of tet genes. Tetracycline acted as an inducer. A functional relationship among the tet regulatory systems was also shown in vivo by complementation of a class A tetR'-galK fusion mutant with the tetR genes of classes A, B, and C. Repression of tetRA-linked galactokinase was ca. 80% in the presence of tetRA or tetRC, and ca. 50% in the presence of tetRB. Taken together, these results demonstrate heterologous repressor-operator interaction, suggesting close relationships among the four classes of Tcr determinants.
已对四类不同四环素抗性决定簇之间的同源和异源阻遏物 - 操纵子相互作用进行了比较。它们分别由RP1/Tn1721(A类)、R222/Tn10(B类)、pSC101/pBR322(C类)和RA1(D类)代表。通过使用纯化的A类(TetRA)和B类(TetRB)阻遏蛋白,所有四类的操纵子序列都能被这两种蛋白识别,每个控制序列的阻遏亚基化学计量比均为四个,但亲和力不同。体外转录已被用于证明TetRA和TetRB对所有四类tet基因的调控活性。四环素作为诱导剂。通过用A类、B类和C类的tetR基因对A类tetR'-galK融合突变体进行互补,也在体内显示了tet调控系统之间的功能关系。在存在tetRA或tetRC的情况下,与tetRA连锁的半乳糖激酶的抑制率约为80%,在存在tetRB的情况下约为50%。综上所述,这些结果证明了异源阻遏物 - 操纵子相互作用,表明四类Tcr决定簇之间存在密切关系。