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U1 RNA-protein complex preferentially binds to both 5' and 3' splice junction sequences in RNA or single-stranded DNA.

作者信息

Tatei K, Takemura K, Mayeda A, Fujiwara Y, Tanaka H, Ishihama A, Ohshima Y

出版信息

Proc Natl Acad Sci U S A. 1984 Oct;81(20):6281-5. doi: 10.1073/pnas.81.20.6281.

DOI:10.1073/pnas.81.20.6281
PMID:6208548
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC391907/
Abstract

We have investigated factors that recognize the splice junctions for mRNA by means of a rapid and sensitive filter binding assay using chemically synthesized single-stranded (ss) DNA (16-21 nucleotides) that includes a splice junction sequence or using RNA transcribed from the DNA. When small nuclear RNA-protein complexes from HeLa cells or rat liver were separated by a DEAE-Sepharose column, U1 RNA-protein complex fractions showed strong binding to ss DNA including a 5' or 3' consensus splice junction sequence. This binding took place in the presence of a large excess of Escherichia coli denatured DNA or RNA, but it was significantly reduced when conserved G-T or A-G within the splice junction was altered. In contrast, the U2 RNA-protein complex fractions did not show significant binding. We also have prepared RNA carrying the splice junction sequence by in vitro transcription of double-stranded splice junction DNA, which was linked to the E. coli lac promoter. By using this RNA, preferential binding to both 5' and 3' splice junction sequences has been confirmed with the partially purified U1 RNA-protein complex fraction described above. When the U1 RNA-protein complex is highly purified, it always retains a strong binding activity for a 5' splice junction. The binding activity for a 3' splice junction is partly or mostly lost during purification. These results strongly suggest that the U1 RNA-protein complex and/or an associated factor participates in the recognition of both 5' and 3' splice junctions.

摘要
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf8a/391907/03da79fb91c7/pnas00621-0030-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf8a/391907/03da79fb91c7/pnas00621-0030-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf8a/391907/03da79fb91c7/pnas00621-0030-a.jpg

相似文献

1
U1 RNA-protein complex preferentially binds to both 5' and 3' splice junction sequences in RNA or single-stranded DNA.
Proc Natl Acad Sci U S A. 1984 Oct;81(20):6281-5. doi: 10.1073/pnas.81.20.6281.
2
Three distinct activities possibly involved in mRNA splicing are found in a nuclear fraction lacking U1 and U2 RNA.在缺乏U1和U2 RNA的细胞核组分中发现了可能参与mRNA剪接的三种不同活性。
Nucleic Acids Res. 1986 Apr 11;14(7):3045-57. doi: 10.1093/nar/14.7.3045.
3
Recognition of 5' and 3' splice site sequences in pre-mRNA studied with a filter binding technique.利用滤膜结合技术对前体mRNA中5'和3'剪接位点序列进行识别研究。
J Biol Chem. 1987 Aug 25;262(24):11667-74.
4
The 5'-terminal sequence of U1 RNA complementary to the consensus 5' splice site of hnRNA is single-stranded in intact U1 snRNP particles.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。
Nucleic Acids Res. 1984 May 25;12(10):4111-26. doi: 10.1093/nar/12.10.4111.
5
The U1 snRNP protein U1C recognizes the 5' splice site in the absence of base pairing.U1 snRNP蛋白U1C在不存在碱基配对的情况下识别5'剪接位点。
Nature. 2002 Sep 5;419(6902):86-90. doi: 10.1038/nature00947.
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Evidence for nuclear factors involved in recognition of 5' splice sites.参与识别5'剪接位点的核因子的证据。
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The U1 small nuclear RNA-protein complex selectively binds a 5' splice site in vitro.U1小核核糖核蛋白复合体在体外能选择性结合5'剪接位点。
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U1-U2 snRNPs interaction induced by an RNA complementary to the 5' end sequence of U1 snRNA.由与U1 snRNA 5'端序列互补的RNA诱导的U1-U2 snRNP相互作用。
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Recognition of mutant and cryptic 5' splice sites by the U1 small nuclear ribonucleoprotein in vitro.体外U1小核核糖核蛋白对突变和隐蔽5'剪接位点的识别。
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10
Multiple factors including the small nuclear ribonucleoproteins U1 and U2 are necessary for pre-mRNA splicing in vitro.包括小核核糖核蛋白U1和U2在内的多种因素是体外前体mRNA剪接所必需的。
Cell. 1985 Oct;42(3):725-36. doi: 10.1016/0092-8674(85)90269-7.

引用本文的文献

1
Domains in viroids: evidence of intermolecular RNA rearrangements and their contribution to viroid evolution.类病毒中的结构域:分子间RNA重排的证据及其对类病毒进化的贡献。
Proc Natl Acad Sci U S A. 1985 Jul;82(14):4582-6. doi: 10.1073/pnas.82.14.4582.
2
Factors influencing alternative splice site utilization in vivo.体内影响可变剪接位点使用的因素。
Mol Cell Biol. 1987 Feb;7(2):738-48. doi: 10.1128/mcb.7.2.738-748.1987.
3
Three distinct activities possibly involved in mRNA splicing are found in a nuclear fraction lacking U1 and U2 RNA.

本文引用的文献

1
Are snRNPs involved in splicing?小核核糖核蛋白颗粒参与剪接过程吗?
Nature. 1980 Jan 10;283(5743):220-4. doi: 10.1038/283220a0.
2
Speculations on RNA splicing.关于RNA剪接的推测。
Cell. 1981 Mar;23(3):643-6. doi: 10.1016/0092-8674(81)90425-6.
3
Rapid synthesis of oligodeoxyribonucleotides. VII. Solid phase synthesis of oligodeoxyribonucleotides by a continuous flow phosphotriester method on a kieselguhr-polyamide support.寡脱氧核糖核苷酸的快速合成。VII. 在硅藻土-聚酰胺载体上通过连续流动磷酸三酯法固相合成寡脱氧核糖核苷酸。
在缺乏U1和U2 RNA的细胞核组分中发现了可能参与mRNA剪接的三种不同活性。
Nucleic Acids Res. 1986 Apr 11;14(7):3045-57. doi: 10.1093/nar/14.7.3045.
4
In vitro splicing of simian virus 40 early pre mRNA.猿猴病毒40早期前体信使核糖核酸的体外剪接
Nucleic Acids Res. 1986 Feb 11;14(3):1219-35. doi: 10.1093/nar/14.3.1219.
5
Evidence for nuclear factors involved in recognition of 5' splice sites.参与识别5'剪接位点的核因子的证据。
Nucleic Acids Res. 1989 Apr 11;17(7):2655-74. doi: 10.1093/nar/17.7.2655.
6
The yeast branchpoint sequence is not required for the formation of a stable U1 snRNA-pre-mRNA complex and is recognized in the absence of U2 snRNA.酵母分支点序列对于稳定的U1 snRNA-前体mRNA复合体的形成并非必需,并且在没有U2 snRNA的情况下也能被识别。
EMBO J. 1991 May;10(5):1209-16. doi: 10.1002/j.1460-2075.1991.tb08062.x.
Nucleic Acids Res. 1982 Oct 25;10(20):6243-54. doi: 10.1093/nar/10.20.6243.
4
Solid phase synthesis of polynucleotides. VI. Further studies on polystyrene copolymers for the solid support.多核苷酸的固相合成。VI. 关于用于固相载体的聚苯乙烯共聚物的进一步研究。
Nucleic Acids Res. 1982 Mar 11;10(5):1755-69. doi: 10.1093/nar/10.5.1755.
5
A catalogue of splice junction sequences.剪接连接序列目录。
Nucleic Acids Res. 1982 Jan 22;10(2):459-72. doi: 10.1093/nar/10.2.459.
6
A small nuclear ribonucleoprotein is required for splicing of adenoviral early RNA sequences.腺病毒早期RNA序列的剪接需要一种小核核糖核蛋白。
Proc Natl Acad Sci U S A. 1981 Mar;78(3):1371-5. doi: 10.1073/pnas.78.3.1371.
7
Splicing of adenovirus RNA in a cell-free transcription system.腺病毒RNA在无细胞转录系统中的剪接
Proc Natl Acad Sci U S A. 1983 Sep;80(17):5230-4. doi: 10.1073/pnas.80.17.5230.
8
Evidence against a scanning model of RNA splicing.反对RNA剪接扫描模型的证据。
EMBO J. 1983;2(5):727-33. doi: 10.1002/j.1460-2075.1983.tb01492.x.
9
Accurate in vitro splicing of human beta-globin RNA.人β-珠蛋白RNA的精确体外剪接
Nucleic Acids Res. 1982 Sep 25;10(18):5429-45. doi: 10.1093/nar/10.18.5429.
10
A gene chimaera of SV40 and mouse beta-globin is transcribed and properly spliced.SV40与小鼠β-珠蛋白的基因嵌合体被转录并正确剪接。
Nature. 1981 Jan 29;289(5796):378-82. doi: 10.1038/289378a0.