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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Coupled transcription-splicing regulation of mutually exclusive splicing events at the 5' exons of protein 4.1R gene.
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Coupled transcription-splicing regulation of mutually exclusive splicing events at the 5' exons of protein 4.1R gene.

机译:在蛋白质4.1R基因5'外显子上的互斥剪接事件的转录剪接调控。

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摘要

The tightly regulated production of distinct erythrocyte protein 4.1R isoforms involves differential splicing of 3 mutually exclusive first exons (1A, 1B, 1C) to the alternative 3' splice sites (ss) of exon 2'/2. Here, we demonstrate that exon 1 and 2'/2 splicing diversity is regulated by a transcription-coupled splicing mechanism. We also implicate distinctive regulatory elements that promote the splicing of exon 1A to the distal 3' ss and exon 1B to the proximal 3' ss in murine erythroleukemia cells. A hybrid minigene driven by cytomegalovirus promoter mimicked 1B-promoter-driven splicing patterns but differed from 1A-promoter-driven splicing patterns, suggesting that promoter identity affects exon 2'/2 splicing. Furthermore, splicing factor SF2/ASF ultraviolet (UV) cross-linked to the exon 2'/2 junction CAGAGAA, a sequence that overlaps the distal U2AF(35)-binding 3' ss. Consequently, depletion of SF2/ASF allowed exon 1B to splice to the distal 3' ss but had no effect on exon 1A splicing. These findings identify for the first time that an SF2/ASF binding site also can serve as a 3' ss in a transcript-dependent manner. Taken together, our results suggest that 4.1R gene expression involves transcriptional regulation coupled with a complex splicing regulatory network.
机译:严格调节的不同红细胞蛋白4.1R同工型的生产涉及3个互斥的第一个外显子(1A,1B,1C)与外显子2'/ 2的3'剪接位点(ss)的不同剪接。在这里,我们证明外显子1和2'/ 2剪接多样性是由转录耦合剪接机制调控的。我们还暗示了独特的调控元件,可促进鼠红白血病细胞中外显子1A拼接至远端3's和外显子1B拼接至近端3's。由巨细胞病毒启动子驱动的杂种小基因模仿1B启动子驱动的剪接模式,但不同于1A启动子驱动的剪接模式,表明启动子的身份影响外显子2'/ 2剪接。此外,剪接因子SF2 / ASF紫外线(UV)交联至外显子2'/ 2连接CAGAGAA,该序列与远端U2AF(35)结合3'ss重叠。因此,SF2 / ASF的耗尽使外显子1B剪接至远端3'ss,但对外显子1A剪接没有影响。这些发现首次确定了SF2 / ASF结合位点也可以以转录本依赖性的方式充当3'ss。两者合计,我们的结果表明4.1R基因表达涉及转录调控,加上复杂的剪接调控网络。

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