Rocheleau G A, Woodson S A
Department of Chemistry and Biochemistry, University of Maryland, College Park 20742-2021, USA.
RNA. 1995 Apr;1(2):183-93.
The third group I intron of Physarum polycephalum is found at the same site in the large subunit rRNA as the well-characterized intron from Tetrahymena thermophila. Formation of alternative structures in the rRNA can inhibit self-splicing of the Tetrahymena intron. We report that splicing of Physarum intron 3 is also influenced by adjacent sequences. In this case, however, splicing is stimulated by the presence of a second group I intron 24 nucleotides downstream. In vitro, intron 3 self-splices 10-25-fold faster in transcripts containing both introns. In vivo, intron 3 is excised from pre-rRNA before intron 2 in the majority of transcripts, as judged by PCR amplification of processing intermediates. This is an unusual example in which self-splicing is enhanced by the juxtaposition of two group I introns. This cooperative effect may be mediated by a conformational change in the rRNA.
多头绒泡菌的第三组I型内含子在大亚基rRNA中的位置与嗜热四膜虫中特征明确的内含子相同。rRNA中替代结构的形成会抑制嗜热四膜虫内含子的自我剪接。我们报道多头绒泡菌内含子3的剪接也受相邻序列影响。然而,在这种情况下,下游24个核苷酸处第二个I型内含子的存在会刺激剪接。在体外,在含有两个内含子的转录本中,内含子3的自我剪接速度快10至25倍。在体内,根据加工中间体的PCR扩增判断,在大多数转录本中,内含子3在转录前体rRNA中比内含子2先被切除。这是一个不寻常的例子,其中两个I型内含子并列增强了自我剪接。这种协同效应可能由rRNA的构象变化介导。