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Altered Localization of Hybrid Incompatibility Proteins in Drosophila

机译:果蝇中杂交不相容蛋白的定位改变

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摘要

Understanding the molecular basis of hybrid incompatibilities is a fundamental pursuit in evolutionary genetics. In crosses between Drosophila melanogaster females and Drosophila simulans males, an interaction between at least three genes is necessary for hybrid male lethality: Hmr(mei), Lhr(sim), and gfzf(sim). Although HMR and LHR physically bind each other and function together in a single complex, the connection between gfzf and either of these proteins remains mysterious. Here, we show that GFZF localizes to many regions of the genome in both D. melanogaster and D. simulans, including at telomeric retrotransposon repeats. We find that GFZF localization at telomeres is significantly different between these two species, reflecting the rapid evolution of telomeric retrotransposon copy number composition between the two species. Next, we show that GFZF and HMR normally do not colocalize in D. melanogaster. In interspecies hybrids, however, HMR shows extensive mis-localization to GFZF sites, thus uncovering a new molecular interaction between these hybrid incompatibility factors. We find that spreading of HMR to GFZF sites requires gfzf(sim) but not Lhr(sim), suggesting distinct roles for these factors in the hybrid incompatibility. Finally, we find that overexpression of HMR and LHR within species is sufficient to mis-localize HMR to GFZF binding sites, indicating that HMR has a natural low affinity for GFZF sites. Together, these studies provide the first insights into the different properties of gfzf between D. melanogaster and D. simulans, and uncover a molecular interaction between gfzf and Hmr in the form of altered protein localization.
机译:了解杂交不相容性的分子基础是进化遗传学的基本追求。在黑腹果蝇雌性和模拟果蝇雄性之间的杂交中,至少三个基因之间的相互作用对于杂交雄性致死是必要的:Hmr(mei)、Lhr(sim) 和 gfzf(sim)。尽管 HMR 和 LHR 在物理上相互结合并在单个复合物中共同发挥作用,但 gfzf 与这些蛋白质中的任何一个之间的联系仍然是神秘的。在这里,我们发现GFZF定位于黑腹果蝇和拟果蝇基因组的许多区域,包括端粒逆转录转座子重复序列。我们发现,GFZF在端粒的定位在这两个物种之间存在显著差异,反映了两个物种之间端粒逆转录转座子拷贝数组成的快速进化。接下来,我们表明 GFZF 和 HMR 通常不会在 D. melanogaster 中共定位。然而,在种间杂交种中,HMR显示出对GFZF位点的广泛错误定位,从而揭示了这些杂交不相容因子之间的新分子相互作用。我们发现 HMR 向 GFZF 位点的传播需要 gfzf(sim) 而不是 Lhr(sim),这表明这些因素在杂交不相容性中起着不同的作用。最后,我们发现 HMR 和 LHR 在物种内的过表达足以将 HMR 错误地定位到 GFZF 结合位点,表明 HMR 对 GFZF 位点具有天然的低亲和力。总之,这些研究首次揭示了黑腹果蝇和拟地蝇之间 gfzf 的不同特性,并揭示了 gfzf 和 Hmr 之间以蛋白质定位改变的形式发生的分子相互作用。

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