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由transformer-2直接抑制剪接

Direct repression of splicing by transformer-2.

作者信息

Chandler Dawn S, Qi Junlin, Mattox William

机构信息

Department of Molecular Genetics, M. D. Anderson Cancer Center, University of Texas, 1515 Holcombe Boulevard, Houston, TX 77030-4009, USA.

出版信息

Mol Cell Biol. 2003 Aug;23(15):5174-85. doi: 10.1128/MCB.23.15.5174-5185.2003.

Abstract

The Drosophila melanogaster sex determination factor Tra2 positively regulates the splicing of both doublesex (dsx) and fruitless (fru) pre-mRNAs but negatively affects the splicing of the M1 intron in tra2 pre-mRNA. Retention of the M1 intron is known to be part of a negative-feedback mechanism wherein the Tra2 protein limits its own synthesis, but the mechanism responsible for accumulation of M1-containing RNA is unknown. Here we show that the recombinant Tra2 protein specifically represses M1 splicing in Drosophila nuclear extracts. We find that the Tra2 protein binds directly to several sites in and near the M1 intron and that, when Tra2 binding is competed with other RNAs, the splicing of M1 is restored. Mapping the RNA sequences functionally required for M1 repression identified both a 34-nucleotide (nt) A/C-rich sequence immediately upstream of the M1 5' splice site and a region within the intron itself. The AC-rich sequence is largely composed of a repeated 4-nt sequence that also forms a subrepeat within the repeated 13-nt splicing enhancer elements of fru and dsx RNAs. Although required for repression, the element also enhances M1 splicing in the absence of Tra2. We propose that Tra2 represses M1 splicing by interacting with multiple sequences in the pre-mRNA and interfering with enhancer function.

摘要

果蝇的性别决定因子Tra2对双性基因(dsx)和无果基因(fru)前体mRNA的剪接均起正向调节作用,但对tra2前体mRNA中M1内含子的剪接起负向影响。已知M1内含子的保留是一种负反馈机制的一部分,其中Tra2蛋白限制其自身的合成,但导致含M1的RNA积累的机制尚不清楚。在此我们表明,重组Tra2蛋白在果蝇核提取物中特异性抑制M1剪接。我们发现Tra2蛋白直接结合到M1内含子及其附近的几个位点,并且当Tra2的结合被其他RNA竞争时,M1的剪接得以恢复。对M1抑制所需的功能性RNA序列进行定位,确定了M1 5'剪接位点上游紧邻的一个34个核苷酸(nt)的富含A/C的序列以及内含子本身的一个区域。富含AC的序列主要由一个重复的4 nt序列组成,该序列在fru和dsx RNA的重复13 nt剪接增强子元件内也形成一个亚重复序列。尽管该元件是抑制所必需的,但在没有Tra2的情况下它也增强M1剪接。我们提出,Tra2通过与前体mRNA中的多个序列相互作用并干扰增强子功能来抑制M1剪接。

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