Kano Y, Imamoto F
Mol Gen Genet. 1979 Apr 17;172(1):25-30. doi: 10.1007/BF00276211.
The 5'-proximal trp leader RNA segment (about 5S) decays at 2 to 3 times slower rates than the distal trp mRNA sequence. This has been demonstrated by employing the deletion mutants which lack a large portion of the structural genes but retain the promoter-proximal region of the trp operon. Relative stability of the leader RNA is not merely due to the presence of an untranslatable region in the segment; the internal untranslatable segment of trp mRNA downstream from the nonsense alteration site of a double mutant trpAD28.trpE9758 decays as fast as the normal trp mRNA sequence. These results suggest that the trp mRNA is endonucleolytically cleaved to yield the small 5'-proximal leader RNA segment before the distal mRNA decays and that the leader RNA sequence is not subject to usual mode of mRNA decay in the 5' to 3' direction.
5'-近端色氨酸前导RNA片段(约5S)的衰变速度比远端色氨酸mRNA序列慢2至3倍。这已通过使用缺失大部分结构基因但保留色氨酸操纵子启动子近端区域的缺失突变体得到证明。前导RNA的相对稳定性不仅仅是由于该片段中存在不可翻译区域;双突变体trpAD28.trpE9758无义改变位点下游的色氨酸mRNA内部不可翻译片段的衰变速度与正常色氨酸mRNA序列一样快。这些结果表明,在远端mRNA衰变之前,色氨酸mRNA被内切核酸酶切割以产生小的5'-近端前导RNA片段,并且前导RNA序列不受5'至3'方向上通常的mRNA衰变模式的影响。