Artz S W, Broach J R
Proc Natl Acad Sci U S A. 1975 Sep;72(9):3453-7. doi: 10.1073/pnas.72.9.3453.
An activator-attenuator model of positive control, a s opposed to the classic repressor-operator model of negative control, is proposed for the major operon-specific mechanism governing expression of the histidine gene cluster of Salmonella typhimurium. Evidence for this mechanism is derived from experiments performed with a coupled in vitro transcription-translation system, as well as with a minimal in vitro transcription system [Kasai, T. (1974) Nature 249, 523--527]. The product (G enzyme, or N-1-[5'-phosphoribosyl]adenosine triphosphate:pyrophosphate phosphoribosyltransferase; EC 2.4.2.17) of the first structural gene (hisG) of the histidine operon is not involved in the positive control mechanism. However, a possible role for G enzyme as an accessory negative control element interacting at the attenuator can be accommodated in our model. The operon-specific mechanism works in conjunction with an independent mechanism involving guanosine 5'-diphosphate 3'-diphosphate (ppGpp) which appears to be a positive effector involved in regulating amino-acid-producing systems, in general [Stephens, J.C., Artz, S.W. & Ames, B.N. (1975) Proc. Nat. Acad. Sci. USA, in press].
针对鼠伤寒沙门氏菌组氨酸基因簇表达调控的主要操纵子特异性机制,我们提出了一种正调控的激活子-衰减子模型,以区别于经典的负调控阻遏物-操纵基因模型。该机制的证据来源于使用体外转录-翻译偶联系统以及最小体外转录系统进行的实验[Kasai, T. (1974) Nature 249, 523 - 527]。组氨酸操纵子第一个结构基因(hisG)的产物(G酶,即N-1-[5'-磷酸核糖基]腺苷三磷酸:焦磷酸磷酸核糖基转移酶;EC 2.4.2.17)不参与正调控机制。然而,在我们的模型中,可以考虑G酶作为在衰减子处相互作用的辅助负调控元件的可能作用。操纵子特异性机制与一种涉及鸟苷5'-二磷酸3'-二磷酸(ppGpp)的独立机制协同作用,一般来说,ppGpp似乎是参与调节氨基酸产生系统的正效应物[Stephens, J.C., Artz, S.W. & Ames, B.N. (1975) Proc. Nat. Acad. Sci. USA, in press]。