Lundberg U, von Gabain A, Melefors O
Department of Bacteriology, Karolinska Institute, Stockholm, Sweden.
EMBO J. 1990 Sep;9(9):2731-41. doi: 10.1002/j.1460-2075.1990.tb07460.x.
We describe here the partial purification of a novel Escherichia coli endoribonuclease, RNase K. This protein catalyses site-specific cleavages in the 5' region of in vitro transcribed ompA and bla transcripts. Some of the resulting cleavage products are also found in cellular ompA mRNA, defining the in vivo activity of RNase K. The following evidence suggests that RNase K initiates mRNA degradation. First, RNase K cleavages are suppressed in the ams mutant, which has a generally prolonged mRNA half-life. Secondly, RNase K cleavage products seem to have very short half-lives in vivo, indicating that they are decay intermediates rather than processing products. Thirdly, the differences in in vivo half-life between the ompA and bla mRNAs are mimicked in in vitro decay reactions with purified RNase K. The relationship between RNase K and the ams locus might point to a more general role of RNase K in mRNA degradation. We discuss the influence of mRNA secondary structure on RNase K cleavage specificity.
我们在此描述了一种新型大肠杆菌内切核糖核酸酶RNase K的部分纯化过程。这种蛋白质催化体外转录的ompA和bla转录本5'区域的位点特异性切割。一些产生的切割产物也存在于细胞的ompA mRNA中,这确定了RNase K的体内活性。以下证据表明RNase K启动mRNA降解。首先,在ams突变体中,RNase K的切割受到抑制,该突变体的mRNA半衰期普遍延长。其次,RNase K切割产物在体内似乎具有非常短的半衰期,表明它们是降解中间体而非加工产物。第三,在与纯化的RNase K进行的体外降解反应中,ompA和bla mRNA在体内半衰期的差异得以体现。RNase K与ams基因座之间的关系可能表明RNase K在mRNA降解中具有更普遍的作用。我们讨论了mRNA二级结构对RNase K切割特异性的影响。