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首页> 外文期刊>Cell cycle >Novel clades of the HU/IHF superfamily point to unexpected roles in the eukaryotic centrosome, chromosome partitioning, and biologic conflicts
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Novel clades of the HU/IHF superfamily point to unexpected roles in the eukaryotic centrosome, chromosome partitioning, and biologic conflicts

机译:Hu / IHF超家族的新型腕表指向真核中心体,染色体分区和生物冲突中的意外角色

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摘要

The HU superfamily of proteins, with a unique DNA-binding mode, has been extensively studied as the primary chromosome-packaging protein of the bacterial superkingdom. Representatives also play a role in DNA-structuring during recombination events and in eukaryotic organellar genome maintenance. However, beyond these well-studied roles, little is understood of the functional diversification of this large superfamily. Using sensitive sequence and structure analysis methods we identify multiple novel clades of the HU superfamily. We present evidence that a novel eukaryotic clade prototyped by the human CCDC81 protein acquired roles beyond DNA-binding, likely in protein-protein interaction in centrosome organization and as a potential cargo-binding protein in conjunction with Dynein-VII. We also show that these eukaryotic versions were acquired via an early lateral transfer from bacteroidetes, where we predict a role in chromosome partition. This likely happened before the last eukaryotic common ancestor, pointing to potential endosymbiont contributions beyond that of the mitochondrial progenitor. Further, we show that the dramatic lineage-specific expansion of this domain in the bacteroidetes lineage primarily is linked to a functional shift related to potential recognition and preemption of genome invasive entities such as mobile elements. Remarkably, the CCDC81 clade has undergone a similar massive lineage-specific expansion within the archosaurian lineage in birds, suggesting a possible use of the HU superfamily in a similar capacity in recognition of non-self molecules even in this case.
机译:具有独特的DNA结合模式的蛋白质的Hu超家族被广泛地研究了细菌超纯染色体包装蛋白。代表也在重组事件和真核细胞内的基因组维持中在DNA结构中发挥作用。然而,除了这些良好的角色之外,很少据了解这一大型超家族的功能多样化。使用敏感序列和结构分析方法,我们识别HU Superfamily的多个新型新型。我们提出了一种通过人CCDC81蛋白质的新型真核蛋白肌肉造成的新型真核蛋白,其具有超出DNA结合的角色,可能在中心组织中的蛋白质 - 蛋白质相互作用和与Dynein-VII结合潜在的货物结合蛋白。我们还表明,通过从Bacteroidetes早期转移获得这些真核版本,在那里我们预测在染色体分区中的作用。这可能发生在最后一次真核共同的祖先之前,指向超出线粒体祖母的潜在endosymbiont的贡献。此外,我们表明,在Bacteroidetes谱系中该域的巨大谱系特异性扩展主要与与潜在识别和诸如移动元件等基因组侵入实体的潜在识别和抢占的功能转变相关联。值得注意的是,CCDC81思工在鸟类内部的古代舰艇内发生了类似的大规模谱系特异性膨胀,表明即使在这种情况下,也可以在类似的容量中使用HU Superfamily以识别非自我分子。

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