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家蚕性别决定基因 dsx 的新型雌性特异性反式剪接和可变剪接形式。

Novel female-specific trans-spliced and alternative splice forms of dsx in the silkworm Bombyx mori.

机构信息

State Key Laboratory of Silkworm Genome Biology, Southwest University, Chongqing 400715, PR China.

出版信息

Biochem Biophys Res Commun. 2013 Feb 15;431(3):630-5. doi: 10.1016/j.bbrc.2012.12.062. Epub 2012 Dec 20.

Abstract

The Bombyx mori doublesex gene (Bmdsx) plays an important role in somatic sexual development. Its pre-mRNA splices in a sex-specific manner to generate two female-specific and one male-specific splice forms. The present study investigated six novel dsx variants generated by trans-splicing between female dsx transcripts and two additional novel genes, dsr1 and dsr2. Expression analysis indicated that Bmdsx-dsr1 represented splicing noise, whereas dsr2, which trans-spliced with dsx to generate five variants, regulated the expression of the female-specific B. mori dsx transcript Bmdsx(F)s. We unexpectedly found a novel exon 2n insertion during Bmdsx transcription, which did not influence the validity of the novel protein, BmDSX(F3). Ectopic expression of BmDSX(F3) repressed the pheromone-binding protein gene and the testis-specific gene A2 in males, and activated of the storage protein 1 gene. Our findings suggest that trans-splicing is a novel regulatory function of Bmdsx, which participates in female sexual development by regulating the expression of three BmDSX(F) proteins.

摘要

家蚕 doublesex 基因(Bmdsx)在体性发育中起重要作用。其前体 mRNA 以性别特异性方式剪接,产生两种雌性特异性和一种雄性特异性剪接形式。本研究通过雌性 dsx 转录物与两个额外的新基因 dsr1 和 dsr2 之间的反式剪接,研究了六个新的 dsx 变体。表达分析表明,Bmdsx-dsr1 代表剪接噪声,而 dsr2 与 dsx 反式剪接产生五个变体,调节雌性特异性 B. mori dsx 转录本 Bmdsx(F)s 的表达。我们出人意料地发现了 Bmdsx 转录过程中一个新的外显子 2n 插入,这并不影响新蛋白 BmDSX(F3)的有效性。BmDSX(F3)的异位表达在雄性中抑制了性信息素结合蛋白基因和睾丸特异性基因 A2,并激活了贮存蛋白 1 基因。我们的研究结果表明,反式剪接是 Bmdsx 的一种新的调控功能,通过调节三种 BmDSX(F)蛋白的表达参与雌性性发育。

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