Been M D, Perrotta A T
Department of Biochemistry, Duke University Medical Center, Durham, NC 27710.
Science. 1991 Apr 19;252(5004):434-7. doi: 10.1126/science.2017681.
For self-splicing of Tetrahymena ribosomal RNA precursor, guanosine binding is required for 5' splice-site cleavage and exon ligation. Whether these two reactions use the same or different guanosine-binding sites has been debated. A double mutation in a previously identified guanosine-binding site within the intron resulted in preference for adenosine (or adenosine triphosphate) as the substrate for cleavage at the 5' splice site. However, splicing was blocked in the exon ligation step. Blockage was reversed by a change from guanine to adenine at the 3' splice site. These results indicate that a single determinant specifies nucleoside binding for both steps of splicing. Furthermore, it suggests that RNA could form an active site specific for adenosine triphosphate.
对于嗜热四膜虫核糖体RNA前体的自我剪接,鸟苷结合是5'剪接位点切割和外显子连接所必需的。这两个反应是使用相同还是不同的鸟苷结合位点一直存在争议。内含子中先前鉴定的鸟苷结合位点的双重突变导致更倾向于将腺苷(或三磷酸腺苷)作为5'剪接位点切割的底物。然而,剪接在外显子连接步骤中被阻断。通过将3'剪接位点的鸟嘌呤变为腺嘌呤,阻断得以逆转。这些结果表明,一个单一的决定因素指定了剪接两个步骤的核苷结合。此外,这表明RNA可以形成一个对三磷酸腺苷特异的活性位点。