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Turnover and lineage-specific broadening of the transcription start site in a testis-specific retrogene

机译:睾丸特异性逆转录基因中转录起始位点的翻转和谱系特异性加宽

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Proteasomes are large multisubunit complexes responsible for regulated protein degradation. Made of a core particle (20S) and regulatory caps (19S), proteasomal proteins are encoded by at least 33 genes, of which 12 have been shown to have testis-specific isoforms in Drosophila melanogaster. Pros28.1A (also known as Pros alpha 4T1), a young retroduplicate copy of Pros28.1 (also known as Pros alpha 4), is one of these isoforms. It is present in the D. melanogaster subgroup and was previously shown to be testis-specific in D. melanogaster. Here, we show its testis-specific transcription in all D. melanogaster subgroup species. Due to this conserved pattern of expression in the species harboring this insertion, we initially expected that a regulatory region common to these species evolved prior to the speciation event. We determined that the region driving testis expression in D. melanogaster is not far from the coding region (within 272 bp upstream of the ATG). However, different Transcription Start Sites (TSSs) are used in D. melanogaster and D. simulans, and a "broad" transcription start site is used in D. yakuba. These results suggest one of the following scenarios: (1) there is a conserved motif in the 5' region of the gene that can be used as an upstream or downstream element or at different distance depending on the species; (2) different species evolved diverse regulatory sequences for the same pattern of expression (i.e., "TSS turnover"); or (3) the transcription start site can be broad or narrow depending on the species. This work reveals the difficulties of studying gene regulation in one species and extrapolating those findings to close relatives.
机译:蛋白酶体是负责调节蛋白质降解的大型多亚基复合物。蛋白酶体蛋白由核心颗粒(20S)和调节帽(19S)组成,由至少33个基因编码,其中12个在黑腹果蝇中具有睾丸特异性同工型。 Pros28.1A(也称为Pros alpha 4T1)是Pros28.1(也称为Pros alpha 4)的年轻反复制副本,是这些同工型之一。它存在于D. melanogaster亚组中,先前已证明是D. melanogaster中睾丸特异性的。在这里,我们在所有D. melanogaster亚组种中都显示了其睾丸特异性转录。由于在具有该插入序列的物种中这种保守的表达模式,我们最初预期这些物种共有的调控区在物种形成事件之前就已经进化了。我们确定,D。melanogaster中驱动睾丸的区域与编码区域相距不远(ATG上游272 bp以内)。但是,在D. melanogaster和D. simulans中使用了不同的转录起始位点(TSS),在D. yakuba中使用了“广泛”的转录起始位点。这些结果提示了以下情况之一:(1)基因的5'区域中存在一个保守的基序,可以用作上游或下游元件或根据物种而在不同距离处使用; (2)不同物种针对相同的表达模式(即“ TSS周转率”)进化出多种调控序列;或(3)转录起始位点可以根据种类而宽或窄。这项工作揭示了研究一个物种的基因调控并将这些发现推论给近亲的困难。

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