Podhajska A J, Hasan N, Szybalski W
Gene. 1985;40(1):163-8. doi: 10.1016/0378-1119(85)90038-1.
We have constructed a prototype of gene-expression plasmids with three novel properties: its "OFF phase" is absolute in all common hosts because the expression promoter is facing away from the studied gene and is blocked by a strong terminator; the "ON phase" is attained by the rapid and efficient inversion of the promoter; only a short heat pulse or exposure to other inducing agents is required to initiate this two-stage process. In the first stage, synthesis of the phage lambda Int protein is induced by the transient derepression of the properly engineered lambda xis- cIts857 prophage. In the immediately following second stage, Int causes inversion of a promoter cloned between the inverted ----P'OP phage att site and the normally oriented ----delta PO delta P' pseudo-bacterial att site. The inverted promoter can now control the expression of the studied gene and also of the lambda N gene cloned in tandem. The N product, in conjunction with the nutL site placed downstream of the promoter, permits efficient antitermination of any terminators present in the att sites, in the plasmid or in the cloned DNA, making this system efficient and of practical value. Employing the promoter-inverting plasmid, it was possible to obtain rapid onset and a high level of galactokinase synthesis from the cloned galK gene. Only a transient, 10-min induction at 42 degrees C was employed, permitting protein synthesis at 30 degrees C, which might be of importance for thermosensitive products. Furthermore, the entire promoter-inversion module can be transferred to any plasmid as a 1.3-kb AvaI-ClaI fragment (see Fig. 1).(ABSTRACT TRUNCATED AT 250 WORDS)
其“关闭阶段”在所有常见宿主中都是绝对的,因为表达启动子背对所研究的基因并被一个强终止子阻断;“开启阶段”通过启动子的快速高效反转来实现;启动这个两阶段过程仅需短暂的热脉冲或暴露于其他诱导剂。在第一阶段,通过对经过适当工程改造的λxis-cIts857原噬菌体的瞬时去阻遏诱导噬菌体λ整合蛋白(Int蛋白)的合成。在紧接着的第二阶段,Int导致克隆在反向----P'OP噬菌体附着位点和正常取向的----δPOδP'假细菌附着位点之间的启动子发生反转。现在,反转后的启动子可以控制所研究基因以及串联克隆的λN基因的表达。N产物与位于启动子下游的nutL位点共同作用,允许对附着位点、质粒或克隆DNA中存在的任何终止子进行有效的抗终止作用,使得该系统高效且具有实用价值。利用这种启动子反转质粒,能够从克隆的galK基因快速启动并高水平合成半乳糖激酶。仅在42℃进行了10分钟的短暂诱导,从而允许在30℃进行蛋白质合成,这对于热敏产物可能很重要。此外,整个启动子反转模块可以作为一个1.3 kb的AvaI-ClaI片段转移到任何质粒中(见图1)。(摘要截短至250字)