Altuvia S, Locker-Giladi H, Koby S, Ben-Nun O, Oppenheim A B
Proc Natl Acad Sci U S A. 1987 Sep;84(18):6511-5. doi: 10.1073/pnas.84.18.6511.
The bacteriophage lambda cIII gene product regulates the lysogenic pathway by stabilizing the lambda cII regulatory protein. Our results show that the expression of the lambda cIII gene is subject to specific requirements. Tests of a set of cIII-lacZ gene and operon fusions reveal that a sequence upstream of the cIII ribosome binding site is needed for cIII translation. The sequence contains an inefficient RNase III processing site. Furthermore, expression of cIII is drastically reduced in cells lacking RNase III. We have isolated a phage carrying a mutation (r1), which lies in the upstream sequence, that leads to a reduction in cIII translation and inactivates the RNase III processing site. The r1 mutant is nevertheless still dependent on RNase III for cIII translation; r1 reduces cIII translation by a factor of 3 in wild-type cells and by a factor of approximately equal to 30 in an RNase III mutant host. We propose that RNase III stimulates cIII translation by binding to the upstream sequence and thereby exposing the cIII ribosome binding site. This stimulation does not involve RNA cleavage. Consistent with this hypothesis is our finding that, in vitro, unprocessed cIII mRNA is translated, whereas RNase III-cleaved cIII mRNA is not.
噬菌体λ cIII基因产物通过稳定λ cII调节蛋白来调控溶原途径。我们的结果表明,λ cIII基因的表达有特定要求。对一组cIII - lacZ基因和操纵子融合体的检测显示,cIII翻译需要cIII核糖体结合位点上游的一个序列。该序列包含一个低效的核糖核酸酶III加工位点。此外,在缺乏核糖核酸酶III的细胞中,cIII的表达大幅降低。我们分离出了一个携带位于上游序列的突变(r1)的噬菌体,该突变导致cIII翻译减少并使核糖核酸酶III加工位点失活。然而,r1突变体在cIII翻译方面仍然依赖核糖核酸酶III;r1在野生型细胞中将cIII翻译降低3倍,在核糖核酸酶III突变宿主中降低约30倍。我们提出,核糖核酸酶III通过与上游序列结合来刺激cIII翻译,从而暴露cIII核糖体结合位点。这种刺激不涉及RNA切割。与这一假设一致的是我们的发现,即在体外,未加工的cIII mRNA可被翻译,而经核糖核酸酶III切割的cIII mRNA则不能。