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Birth Death and Replacement of Karyopherins in Drosophila

机译:果蝇中核仁蛋白的出生死亡和替换

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摘要

Nucleocytoplasmic transport is a broadly conserved process across eukaryotes. Despite its essential function and conserved mechanism, components of the nuclear transport apparatus have been implicated in genetic conflicts in Drosophila, especially in the male germ line. The best understood case is represented by a truncated RanGAP gene duplication that is part of the segregation distorter system in Drosophila melanogaster. Consistent with the hypothesis that the nuclear transport pathway is at the heart of mediating genetic conflicts, both nucleoporins and directionality imposing components of nuclear transport have previously been shown to evolve under positive selection. Here, we present a comprehensive phylogenomic analysis of importins (karyopherins) in Drosophila evolution. Importins are adaptor molecules that physically mediate the transport of cargo molecules and comprise the third component of the nuclear transport apparatus. We find that importins have been repeatedly gained and lost throughout various stages of Drosophila evolution, including two intriguing examples of an apparently coincident loss and gain of nonorthologous and noncanonical importin-α. Although there are a few signatures of episodic positive selection, genetic innovation in importin evolution is more evident in patterns of recurrent gene birth and loss specifically for function in Drosophila testes, which is consistent with their role in supporting host genomes defense against segregation distortion.
机译:核细胞质运输是跨真核生物的广泛保守的过程。尽管它具有必不可少的功能和保守的机制,但核转运装置的组件却与果蝇特别是雄性种系的遗传冲突有关。最好理解的情况是果蝇的分离畸变系统的一部分被截短的RanGAP基因重复所代表。与核转运途径是介导遗传冲突的核心这一假设相一致的是,先前已经证明,在正选择下,核孔蛋白和定向性强加了核转运的组成部分。在这里,我们提出了果蝇进化过程中importins(karyopherins)的全面系统生物学分析。导入蛋白是衔接子分子,其物理上介导货物分子的运输并构成核运输设备的第三部分。我们发现,在果蝇进化的各个阶段中反复获得和丢失了重要的输入素,包括两个有趣的例子,即非直系同源和非规范的重要输入素-α明显地同时丢失和获得。尽管有一些偶发阳性选择的特征,但importin进化中的遗传创新在果蝇睾丸中的重复基因出生和丢失的模式中更为明显,特别是针对果蝇睾丸的功能,这与它们在支​​持宿主基因组防御分离畸变中的作用是一致的。

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