Nazar R N, Matheson A T, Bellemare G
J Biol Chem. 1978 Aug 10;253(15):5464-9.
The nucleotide sequence of ribosomal 5 S RNA from a halophilic bacterium, Halobacterium cutirubrum, grown in 4 M sodium chloride is U-U-A-A-G-G-C-G-G-C-C-A-U-A-G-C-G-G-U-G-G-G-G-U-U-A-C-U-C-C-C-G-U-A-C-C-C-A-U-C-C-C-G-A-A-C-A-C-G-G-A-A-G-A-U-A-A-G-C-C-C-G-C-C-U-G-C-G-U-U-C-C-G-G-U-C-A-G-U-A-C-U-G-G-A-G-U-G-C-G-A-G-C-C-U-C-U-G-G-G-A-A-A-U-C-C-G-G-U-U-C-G-C-C-G-C-C-U-A-C-U. This nucleotide sequence is the longest prokaryotic 5 S rRNA to be reported and unlike other 5 S species does not contain a terminal mononucleoside diphosphate residue at its 5'-end. When compared to other 5 S rRNA's, the sequence homology is greatest (about 68%) with Bacillus subtilis; there is a lower but similar degree of homology (about 58%) with either Escherichia coli or human 5 S RNA. The comparisons further indicate that among 5 S RNA's, eleven of the nucleotide residues are unique to H. cutirubrum. Estimates of the secondary structure of the H. cutirubrum 5 S RNA molecule contain one additional stable hairpin loop which is not found in other 5 S rRNA species; this unusual structure is probably an adaptation to the high salt environment within H. cutirubrum cells.
在4M氯化钠中生长的嗜盐细菌——深红嗜盐菌(Halobacterium cutirubrum)的核糖体5S RNA的核苷酸序列为:U-U-A-A-G-G-C-G-G-C-C-A-U-A-G-C-G-G-U-G-G-G-G-U-U-A-C-U-C-C-C-G-U-A-C-C-C-A-U-C-C-C-G-A-A-C-A-C-G-G-A-A-G-A-U-A-A-G-C-C-C-G-C-C-U-G-C-G-U-U-C-C-G-G-U-C-A-G-U-A-C-U-G-G-A-G-U-G-C-G-A-G-C-C-U-C-U-G-G-G-A-A-A-U-C-C-G-G-U-U-C-G-C-C-G-C-C-U-A-C-U。该核苷酸序列是已报道的最长的原核5S rRNA,与其他5S种类不同,它在5'端不含有末端单核苷二磷酸残基。与其他5S rRNA相比,它与枯草芽孢杆菌(Bacillus subtilis)的序列同源性最高(约68%);与大肠杆菌或人类5S RNA的同源性较低但相似(约58%)。这些比较进一步表明,在5S RNA中,有11个核苷酸残基是深红嗜盐菌所特有的。对深红嗜盐菌5S RNA分子二级结构的估计包含一个额外的稳定发夹环,这在其他5S rRNA种类中未发现;这种不寻常的结构可能是对深红嗜盐菌细胞内高盐环境的一种适应。