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与核内不均一RNA(hnRNA)共有5'剪接位点互补的U1 RNA的5'末端序列在完整的U1小核核糖核蛋白颗粒中是单链的。

The 5'-terminal sequence of U1 RNA complementary to the consensus 5' splice site of hnRNA is single-stranded in intact U1 snRNP particles.

作者信息

Rinke J, Appel B, Blöcker H, Frank R, Lührmann R

出版信息

Nucleic Acids Res. 1984 May 25;12(10):4111-26. doi: 10.1093/nar/12.10.4111.

Abstract

The 5'-terminal region of U1 snRNA is highly complementary to the consensus exon-intron regions of hnRNA and it has been suggested that U1 snRNP might play a role in the splicing of the pre-mRNA by intermolecular base-pairing between these regions. Here the secondary structure of the 5' terminus of U1 RNA in the isolated native U1 snRNP particle has been investigated by site-directed enzymatic cleavage of the RNA. Individual oligodeoxynucleotides complementary to various sequences within the first 15 nucleotides of the 5' terminus of U1 RNA have been tested for their ability to form stable DNA X RNA hybrids, with subsequent cleavage of the U1 RNA by RNase H. Our results show unequivocally that the 9 nucleotides at the 5' terminus which are complementary to a consensus 5' splice site are indeed single-stranded in the intact U1 snRNP particle, and are not protected by snRNP proteins. However, they also indicate that the U1 sequence complementary to an intron's consensus 3' end is not readily available for intermolecular base-pairing, either in the intact U1 snRNP particle or in the deproteinized U1 RNA molecule. Therefore our data favour the possibility that U1 snRNP plays a role only in the recognition of a 5' splice site of hnRNA, rather than being involved in the alignment of both ends of an intron for splicing.

摘要

U1 snRNA的5'末端区域与hnRNA的共有外显子-内含子区域高度互补,有人提出U1 snRNP可能通过这些区域之间的分子间碱基配对在pre-mRNA的剪接中发挥作用。在此,通过对RNA进行定点酶切研究了分离的天然U1 snRNP颗粒中U1 RNA 5'末端的二级结构。已测试与U1 RNA 5'末端前15个核苷酸内各种序列互补的单个寡脱氧核苷酸形成稳定的DNA×RNA杂交体的能力,随后用RNase H切割U1 RNA。我们的结果明确表明,与共有5'剪接位点互补的5'末端的9个核苷酸在完整的U1 snRNP颗粒中确实是单链的,并且不受snRNP蛋白的保护。然而,它们也表明,无论是在完整的U1 snRNP颗粒中还是在脱蛋白的U1 RNA分子中,与内含子共有3'末端互补的U1序列都不容易用于分子间碱基配对。因此,我们的数据支持U1 snRNP仅在识别hnRNA的5'剪接位点中发挥作用,而不是参与内含子两端的对齐以进行剪接的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e3e3/318820/919fe756a7d7/nar00328-0072-a.jpg

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