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SAP155-mediated splicing of FUSE-binding protein-interacting repressor serves as a molecular switch for c-myc gene expression

机译:SAP155介导的FUSE结合蛋白相互作用阻遏物的剪接充当c-myc基因表达的分子开关

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The Far UpStream Element (FUSE)-binding protein-interacting repressor (FIR), a c-myc transcriptional suppressor, is alternatively spliced removing the transcriptional repression domain within exon 2 (FIRΔexon2) in colorectal cancers. SAP155 is a subunit of the essential splicing factor 3b (SF3b) subcomplex in the spliceosome. This study aims to study the significance of the FIR-SAP155 interaction for the coordination of c-myc transcription, pre-mRNA splicing, and c-Myc protein modification, as well as to interrogate FIRΔexon2 for other functions relating to altered FIR pre-mRNA splicing. Knockdown of SAP155 or FIR was used to investigate their reciprocal influence on each other and on c-myc transcription, pre-mRNA splicing, and protein expression. Pull down from HeLa cell nuclear extracts revealed the association of FIR, FIRΔexon2, and SF3b subunits. FIR and FIRΔexon2 were coimmunoprecipitated with SAP155. FIR and FIRΔexon2 adenovirus vector (Ad-FIR and Ad-FIRΔexon2, respectively) were prepared to test for their influence on c-myc expression. FIR, SAP155, SAP130, and c-myc were coordinately upregulated inhuman colorectal cancer. These results reveal that SAP155 and FIR/FIRΔexon2 forma complex and are mutually upregulating. Ad-FIRΔexon2 antagonized Ad-FIR transcriptional repression of c-myc in HeLa cells. Because FIRΔexon2 still carries RRM1 and RRM2 and binding activity to FUSE, it is able to displace repression competent FIR from FUSE in electrophoretic mobility shift assays, thus thwarting FIR-mediated transcriptional repression by FUSE. Thus aberrant FIRΔexon2 production in turn sustained c-Myc expression. In conclusion, altered FIR and c-myc pre-mRNA splicing, in addition to c-Myc expression by augmented FIR/FIRΔexon2- SAP155 complex, potentially contribute to colorectal cancer development.
机译:远上游元件(FUSE)结合蛋白相互作用阻遏物(FIR),一种c-myc转录抑制子,可选择性剪接,以除去大肠癌中外显子2内的转录抑制域(FIRΔexon2)。 SAP155是剪接体中必需剪接因子3b(SF3b)亚复合物的亚基。这项研究旨在研究FIR-SAP155相互作用对于协调c-myc转录,mRNA之前的剪接和c-Myc蛋白修饰的意义,以及针对其他与FIR pre-mRNA改变有关的功能询问FIRΔexon2拼接。敲低SAP155或FIR来研究它们之间的相互影响以及对c-myc转录,mRNA前剪接和蛋白质表达的相互影响。从HeLa细胞核提取物中提取下来的蛋白显示了FIR,FIRΔexon2和SF3b亚基的关联。 FIR和FIRΔexon2与SAP155共免疫沉淀。制备FIR和FIRΔexon2腺病毒载体(分别为Ad-FIR和Ad-FIRΔexon2)以测试它们对c-myc表达的影响。 FIR,SAP155,SAP130和c-myc在人类大肠癌中协同上调。这些结果表明,SAP155和FIR /FIRΔexon2的形式复杂,并且相互上调。 Ad-FIRΔexon2拮抗HeLa细胞中c-myc的Ad-FIR转录抑制。由于FIRΔexon2仍然具有RRM1和RRM2以及与FUSE的结合活性,因此它能够在电泳迁移率变动分析中取代FUSE的抑制性FIR,从而阻止了FUSE介导的FIR介导的转录抑制。因此,异常的FIRΔexon2产生反过来持续了c-Myc表达。总之,除了通过增强的FIR /FIRΔexon2-SAP155复合物表达c-Myc外,改变的FIR和c-myc pre-mRNA剪接可能有助于结直肠癌的发展。

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