Stahl D A, Walker T A, Meyhack B, Pace N R
Cell. 1979 Dec;18(4):1133-43. doi: 10.1016/0092-8674(79)90226-5.
An immediate precursor of 5S ribosomal RNA (rRNA) from Bacillus subtilis has 21 and 42 nucleotide precursor-specific segments associated with its 5' and 3' termini, respectively. On the basis of its nucleotide sequence, predicted secondary structure and location in the rRNA transcriptional unit, the 3' precursor element apparently functions during the termination of transcription. A portion of the 5' precursor element is shown to facilitate the native folding of the mature domain of the precursor. Precursor 5S rRNA molecules which lack the 5' terminal 8-9 nucleotides of the 5' precursor elements were fabricated. These abbreviated constructs assume a non-native conformation, as revealed by their behavior during polyacrylamide gel electrophoresis. The aberrant conformation is evidently forced upon the abbreviated constructs by the residual 5' precursor sequence, since its removal by the maturation endonuclease RNAase M5 precipitates the reordering of the mature domain into its native conformation. Inspection of the nucleotide sequence of the 5S precursor suggested the nature of the conformational aberration, and gel electrophoresis analyses of limited nuclease digests of end-labeled precursors in the native and aberrant conformations are consistent with the derived model. We conclude taht the 5' terminal six nucleotides in the intact 5S precursor assist in the folding of the mature domain by forming a base-paired duplex with neighboring nucleotides, thereby preventing that adjacent sequence from engendering the abnormal conformation. The involvement of precursor-specific sequences and conformational dynamics in RNA function are discussed.
来自枯草芽孢杆菌的5S核糖体RNA(rRNA)的直接前体在其5'和3'末端分别有21个和42个核苷酸的前体特异性片段。根据其核苷酸序列、预测的二级结构以及在rRNA转录单元中的位置,3'前体元件显然在转录终止过程中发挥作用。5'前体元件的一部分被证明有助于前体成熟结构域的天然折叠。构建了缺少5'前体元件5'末端8 - 9个核苷酸的前体5S rRNA分子。这些缩短的构建体呈现出非天然构象,这在聚丙烯酰胺凝胶电泳过程中表现出来。异常构象显然是由残留的5'前体序列强加给缩短的构建体的,因为通过成熟内切核酸酶RNAase M5去除该序列会促使成熟结构域重新排列成其天然构象。对5S前体核苷酸序列的检查揭示了构象异常的性质,并且对天然和异常构象的末端标记前体进行有限核酸酶消化的凝胶电泳分析与推导模型一致。我们得出结论,完整的5S前体中5'末端的六个核苷酸通过与相邻核苷酸形成碱基配对双链体来协助成熟结构域的折叠,从而防止相邻序列产生异常构象。本文还讨论了前体特异性序列和构象动力学在RNA功能中的作用。