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由多拷贝质粒产生的OOP RNA通过一种依赖于核糖核酸酶III的机制抑制λ cII基因的表达。

OOP RNA, produced from multicopy plasmids, inhibits lambda cII gene expression through an RNase III-dependent mechanism.

作者信息

Krinke L, Wulff D L

机构信息

Department of Biological Sciences, State University of New York, Albany 12222.

出版信息

Genes Dev. 1987 Nov;1(9):1005-13. doi: 10.1101/gad.1.9.1005.

Abstract

OOP RNA is a major short (77 bases) transcript that is made from bacteriophage lambda DNA both in vivo and in vitro. OOP RNA is synthesized in the opposite direction to mRNA for the lambda cII gene, and the final 55 bp of the OOP region overlaps the 3' end of the cII gene. We find that a multicopy plasmid containing an OOP DNA fragment inhibits cII expression from a derepressed prophage by approximately 100-fold, using an in vivo assay in which cII protein activates galactokinase synthesis from a cII-dependent promoter on a multicopy plasmid. A large inhibitory effect is also observed when the po promoter for OOP RNA is replaced by the strong lambda pL promoter, but not when po is deleted. Plasmids that provide a large excess of "anti-OOP" RNA (RNA that is complementary to OOP RNA) make OOP RNA a less effective inhibitor of cII expression. Inhibition by the OOP DNA plasmid is not observed in an Escherichia coli strain deficient in RNase III. We propose that the 3' end of cII mRNA and OOP RNA form a double-stranded complex that is a substrate for the host enzyme RNase III, resulting in degradation of cII mRNA. Deletion studies on the OOP DNA plasmid indicate that no specific sequence between the promoter and terminator stem structure is required for the inhibitory effect. Lambda cII expression from an induced prophage is increased twofold in the presence of a large excess of anti-OOP RNA. This experiment, in which the prophage is the sole source of OOP RNA, suggests a physiological role for OOP RNA in regulating cII-gene expression.

摘要

OOP RNA是一种主要的短转录本(77个碱基),在体内和体外均由噬菌体λ DNA产生。OOP RNA的合成方向与λ cII基因的mRNA相反,且OOP区域的最后55个碱基对与cII基因的3'端重叠。我们发现,使用体内试验(其中cII蛋白从多拷贝质粒上的cII依赖性启动子激活半乳糖激酶合成),含有OOP DNA片段的多拷贝质粒可使去阻遏原噬菌体的cII表达抑制约100倍。当OOP RNA的po启动子被强λ pL启动子取代时,也观察到了较大的抑制作用,但删除po时则未观察到。提供大量“抗OOP”RNA(与OOP RNA互补的RNA)的质粒会使OOP RNA对cII表达的抑制作用减弱。在缺乏RNase III的大肠杆菌菌株中未观察到OOP DNA质粒的抑制作用。我们提出,cII mRNA的3'端和OOP RNA形成双链复合物,该复合物是宿主酶RNase III的底物,导致cII mRNA降解。对OOP DNA质粒的缺失研究表明,启动子和终止子茎结构之间不需要特定序列即可产生抑制作用。在存在大量过量抗OOP RNA的情况下,诱导原噬菌体的λ cII表达增加了两倍。该实验中,原噬菌体是OOP RNA的唯一来源,提示OOP RNA在调节cII基因表达中具有生理作用。

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