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体外使用远端可变5'剪接位点需要一种新型蛋白质因子。

A novel protein factor is required for use of distal alternative 5' splice sites in vitro.

作者信息

Harper J E, Manley J L

机构信息

Cold Spring Harbor Laboratory, New York 11724.

出版信息

Mol Cell Biol. 1991 Dec;11(12):5945-53. doi: 10.1128/mcb.11.12.5945-5953.1991.

Abstract

Adenovirus E1A pre-mRNA was used as a model to examine alternative 5' splice site selection during in vitro splicing reactions. Strong preference for the downstream 13S 5' splice site over the upstream 12S or 9S 5' splice sites was observed. However, the 12S 5' splice site was used efficiently when a mutant pre-mRNA lacking the 13S 5' splice site was processed, and 12S splicing from this substrate was not reduced by 13S splicing from a separate pre-mRNA, demonstrating that 13S splicing reduced 12S 5' splice site selection through a bona fide cis-competition. DEAE-cellulose chromatography of nuclear extract yielded two fractions with different splicing activities. The bound fraction contained all components required for efficient splicing of simple substrates but was unable to utilize alternative 5' splice sites. In contrast, the flow-through fraction, which by itself was inactive, contained an activity required for alternative splicing and was shown to stimulate 12S and 9S splicing, while reducing 13S splicing, when added to reactions carried out by the bound fraction. Furthermore, the activity, which we have called distal splicing factor (DSF), enhanced utilization of an upstream 5' splice site on a simian virus 40 early pre-mRNA, suggesting that the factor acts in a position-dependent, substrate-independent fashion. Several lines of evidence are presented suggesting that DSF is a non-small nuclear ribonucleoprotein protein. Finally, we describe a functional interaction between DSF and ASF, a protein that enhances use of downstream 5' splice sites.

摘要

腺病毒E1A前体mRNA被用作模型,以研究体外剪接反应过程中5'剪接位点的选择性。研究发现,相较于上游的12S或9S 5'剪接位点,细胞更倾向于选择下游的13S 5'剪接位点。然而,当处理缺乏13S 5'剪接位点的突变前体mRNA时,12S 5'剪接位点能高效发挥作用,并且单独的前体mRNA进行13S剪接并不会降低该底物的12S剪接效率,这表明13S剪接通过真正的顺式竞争降低了12S 5'剪接位点的选择。对核提取物进行DEAE - 纤维素柱层析,得到了具有不同剪接活性的两个组分。结合组分包含高效剪接简单底物所需的所有成分,但无法利用选择性5'剪接位点。相反,自身无活性的穿透组分含有选择性剪接所需的活性,当将其添加到由结合组分进行的反应中时,可刺激12S和9S剪接,同时降低13S剪接。此外,我们将这种活性称为远端剪接因子(DSF),它增强了猿猴病毒40早期前体mRNA上上游5'剪接位点的利用,这表明该因子以位置依赖、底物非依赖的方式发挥作用。文中提供了多条证据表明DSF是一种非小核核糖核蛋白。最后,我们描述了DSF与ASF之间的功能相互作用,ASF是一种增强下游5'剪接位点利用的蛋白质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6002/361750/5fa221a912e9/molcellb00036-0160-a.jpg

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