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内在的U2AF结合受外显子增强子信号调控,且与剪接活性的变化同时发生。

Intrinsic U2AF binding is modulated by exon enhancer signals in parallel with changes in splicing activity.

作者信息

Wang Z, Hoffmann H M, Grabowski P J

机构信息

Howard Hughes Medical Institute, University of Pittsburgh, Pennsylvania 15260, USA.

出版信息

RNA. 1995 Mar;1(1):21-35.

Abstract

A functional analysis of exon replacement mutations was performed in parallel with RNA-protein binding assays to gain insight into the role of the exon in alternative and simple splicing events. These results show that constitutive exons from unrelated genes contain strong signals that promote splicing in multiple sequence contexts by enhancing 3' splice site activity. A clue to the nature of the relationship between the exon and adjacent 3' splice site is indicated by the binding properties of exon variant RNAs when tested with different biochemical preparations of the essential splicing protein, U2AF. In the context of a complete nuclear extract, U2AF binding to the 3' splice site is stimulated by the presence of an adjacent constitutive exon. In contrast, highly purified HeLa U2AF binds equivalently to the exon variants under conditions in which differential polypyrimidine tract binding is evident. These results provide support for an assisted binding model in which positive-acting signals within exons, exon enhancers, direct the binding of accessory factors, which in turn increase the intrinsic affinity of U2AF for the adjacent 3' splice site. Further support for an assisted binding model is indicated by biochemical complementation of U2AF binding and by the localization of a novel exon enhancer, which, when introduced into a weak exon, stimulates splicing activity in parallel with U2AF binding. Immunoprecipitation analysis identifies the splicing factor, SC35, as a constituent of the exon enhancer binding complex. These results are discussed in the context of current models for functional exon-bridging interactions.

摘要

对外显子替换突变进行了功能分析,并与RNA-蛋白质结合试验同时进行,以深入了解外显子在可变剪接和简单剪接事件中的作用。这些结果表明,来自不相关基因的组成型外显子包含强大的信号,通过增强3'剪接位点活性,在多种序列背景下促进剪接。当用必需剪接蛋白U2AF的不同生化制剂进行测试时,外显子变体RNA的结合特性揭示了外显子与相邻3'剪接位点之间关系的本质线索。在完整核提取物的背景下,相邻组成型外显子的存在会刺激U2AF与3'剪接位点的结合。相反,在差异多嘧啶序列结合明显的条件下,高度纯化的HeLa U2AF与外显子变体的结合等效。这些结果为辅助结合模型提供了支持,在外显子内的正向作用信号,即外显子增强子,指导辅助因子的结合,进而增加U2AF对相邻3'剪接位点的内在亲和力。U2AF结合的生化互补以及新型外显子增强子的定位进一步支持了辅助结合模型,当将该增强子引入弱外显子时,它会与U2AF结合同时刺激剪接活性。免疫沉淀分析确定剪接因子SC35是外显子增强子结合复合物的组成成分。这些结果在当前功能性外显子桥接相互作用模型的背景下进行了讨论。

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