College of Life Sciences, Shaanxi Normal University, Xi'an 710062, Shaanxi, PR China.
Biochemistry (Mosc). 2012 Apr;77(4):411-7. doi: 10.1134/S000629791204013X.
In most insects and some other protostomes, a small stretch of nucleotides can be removed from mature 28S rRNA molecules, which could create two 28S rRNA subunits (28Sα and 28Sβ). Thus, during electrophoresis, the rRNA profiles of these organisms may differ significantly from the standard benchmark since the two subunits co-migrate with the 18S rRNA. To understand the structure and mechanism of the atypical 28S rRNA molecule, partial fragments of 28Sα and 28Sβ in brine shrimp Artemia parthenogenetica and planarian Dugesia japonica were cloned using a modified technology based on terminal transferase. Alignment with the corresponding sequences of 28S rDNAs indicates that there are 41 nucleotides in A. parthenogenetica and 42 nucleotides in D. japonica absent from the mature rRNAs. The AU content of the gap sequences of D. japonica and A. parthenogenetica is high. Both the gaps may form stem-loop structure. In D. japonica a UAAU cleavage signal is identified in the loop, but it is absent in A. parthenogenetica. Thus, it is proposed that the gap processing of 28S rRNA was a late enzyme-dependent cleavage event in the rRNA maturational process based on the AU rich gap sequence and the formation of the stem-loop structure to expose the processing segment, while the deletion of the gap region would not affect the structure and function of the 28S rRNA molecule.
在大多数昆虫和一些其他原口动物中,可以从成熟的 28S rRNA 分子中去除一小段核苷酸,这可以产生两个 28S rRNA 亚基(28Sα 和 28Sβ)。因此,在电泳过程中,这些生物体的 rRNA 图谱可能与标准基准有很大差异,因为这两个亚基与 18S rRNA 共同迁移。为了了解非典型 28S rRNA 分子的结构和机制,使用基于末端转移酶的改良技术,从卤虫无节幼体 Artemia parthenogenetica 和日本涡虫 Dugesia japonica 中克隆了 28Sα 和 28Sβ 的部分片段。与 28S rDNA 的相应序列进行比对表明,A. parthenogenetica 中缺失了 41 个核苷酸,D. japonica 中缺失了 42 个核苷酸。D. japonica 和 A. parthenogenetica 中缺口序列的 AU 含量很高。这两个缺口都可能形成茎环结构。在 D. japonica 中,在环中识别到 UAAU 切割信号,但在 A. parthenogenetica 中不存在。因此,提出 28S rRNA 的缺口加工是 rRNA 成熟过程中晚期酶依赖性切割事件,基于富含 AU 的缺口序列和形成茎环结构以暴露加工片段,而缺口区域的缺失不会影响 28S rRNA 分子的结构和功能。