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首页> 外文期刊>Scientific reports. >Isoform-specific functions of an evolutionarily conserved 3?bp micro-exon alternatively spliced from another exon in Drosophila homothorax gene
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Isoform-specific functions of an evolutionarily conserved 3?bp micro-exon alternatively spliced from another exon in Drosophila homothorax gene

机译:异构型特定功能的进化保守3?BP微外显子或可选地拼接来自果蝇Homothorax基因的另一个外显子

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Micro-exons are exons of very small size (usually 3–30 nts). Some micro-exons are alternatively spliced. Their functions, regulation and evolution are largely unknown. Here, we present an example of an alternatively spliced 3?bp micro-exon (micro-Ex8) in the homothorax (hth) gene in Drosophila. Hth is involved in many developmental processes. It contains a MH domain and a TALE-class homeodomain (HD). It binds to another homeodomain Exd via its MH domain to promote the nuclear import of the Hth-Exd complex and serve as a cofactor for Hox proteins. The MH and HD domains in Hth as well as the HTh-Exd interaction are highly conserved in evolution. The alternatively spliced micro-exon lies between the exons encoding the MH and HD domains. We provide clear proof that the micro-Ex8 is produced by alternative splicing from a 48?bp full-length exon 8 (FL-Ex8) and the micro-Ex8 is the first three nt is FL-Ex8. We found that the micro-Ex8 is the ancient form and the 3?+?48 organization of alternatively spliced overlapping exons only emerged in the Schizophora group of Diptera and is absolutely conserved in this group. We then used several strategies to test the in vivo function of the two types of isoforms and found that the micro-Ex8 and FL-Ex8 isoforms have largely overlapping functions but also have non-redundant functions that are tissue-specific, which supports their strong evolutionary conservation. Since the different combinations of protein interaction of Hth with Exd and/or Hox can have different DNA target specificity, our finding of alternatively spliced isoforms adds to the spectrum of structural and functional diversity under developmental regulation.
机译:微外显子是非常小的大小(通常为3-30nts)的外显子。一些微外显子也是拼接的。他们的职能,调节和进化在很大程度上是未知的。这里,我们介绍了在果蝇(HomoThila的Homothorax(Hth)基因中的交替剪接3?BP微外显子(Micro-EX8)的一个例子。 HTH参与了许多发展过程。它包含一个mh域和tale-class homodomain(HD)。它通过其MH领域与另一个同源域EXD结合,以促进Hth-Exd复合物的核进口,并用作Hox蛋白的辅助因子。 HTH和HD和HD域以及Hth-EXD相互作用的高度保存在演变中。可选地拼接微外显子位于编码MH和HD结构域的外显子之间。我们提供明确的证据,即通过从48Δbp全长外显子8(fl-ex8)和微ex8是FL-EX8的替代拼接,通过替代剪接来制造微型EX8。我们发现Micro-ex8是古代形式,3?+ 48 + 48组织只能在Schizophora群Diptera中出现,并且在这个群体中绝对被保守。然后我们使用了几种策略来测试两种类型的同种型的体内功能,发现微型EX8和FL-EX8同种型具有很大程度上重叠的功能,但也具有非冗余功能,这些功能是特定于组织特异性的进化节约。由于HTH与EXD和/或HOX的蛋白质相互作用的不同组合可以具有不同的DNA靶特异性,因此我们的发现可替代的同种型在发育调节下增加了结构和功能多样性的光谱。

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