Nishikawa K, Takemura S
J Biochem. 1977 Apr;81(4):995-1003. doi: 10.1093/oxfordjournals.jbchem.a131566.
Identification of single-stranded regions in Torulopsis utilis 5S RNA was attempted by the use of Nuclease S1, a single-strand specific endonuclease. When T. utilis 5S RNA was subjected to prolonged incubation with Nuclease S1, about 50% of the substrate 5S RNA remained as large oligonucleotide "cores." Such Nuclease S1-resistant fragments were purified and sequenced by column chromatographic procedures. These analyses revealed that regions around positions 12, 40, 57, and 110 are in exposed single-stranded loops at 37 degrees C and that regions around positions 12 and 40 are most exposed at 20 degrees C. These results are compatible with our secondary structure model for T. utilis 5S RNA (Nishikawa & Takemura (1974) J. Biochem. 76, 935-947) except that the 5' part of the molecule (from the region around position 22 to that around position 57) might have a somewhat looser conformation than our secondary structure model suggests. The implications of such results are also discussed in relation to the presumed function of the sequence C-G-A-U-C (around position 40) as one of the recognition sites for initiator tRNA binding on ribosomes.
我们尝试使用单链特异性核酸内切酶核酸酶S1来鉴定产朊假丝酵母5S RNA中的单链区域。当产朊假丝酵母5S RNA与核酸酶S1长时间孵育时,约50%的底物5S RNA以大的寡核苷酸“核心”形式保留下来。这些对核酸酶S1具有抗性的片段通过柱色谱法进行纯化和测序。这些分析表明,在37℃时,位置12、40、57和110周围的区域处于暴露的单链环中,并且在20℃时,位置12和40周围的区域暴露程度最高。这些结果与我们关于产朊假丝酵母5S RNA的二级结构模型(西川和竹村(1974年)《生物化学杂志》76卷,935 - 947页)相符,只是该分子的5'部分(从位置22周围的区域到位置57周围的区域)可能具有比我们的二级结构模型所暗示的更为松散的构象。我们还结合序列C - G - A - U - C(位置40周围)作为核糖体上起始tRNA结合的识别位点之一的假定功能,讨论了这些结果的意义。