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首页> 外文期刊>Scientific reports. >Identification of telomerase RNAs in species of the Yarrowia clade provides insights into the co-evolution of telomerase, telomeric repeats and telomere-binding proteins
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Identification of telomerase RNAs in species of the Yarrowia clade provides insights into the co-evolution of telomerase, telomeric repeats and telomere-binding proteins

机译:Yarrowia Clade种类的端粒酶RNA鉴定为端粒酶,端粒重复和端粒结合蛋白的共同进化提供了见解

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Telomeric repeats in fungi of the subphylum Saccharomycotina exhibit great inter- and intra-species variability in length and sequence. Such variations challenged telomeric DNA-binding proteins that co-evolved to maintain their functions at telomeres. Here, we compare the extent of co-variations in telomeric repeats, encoded in the telomerase RNAs (TERs), and the repeat-binding proteins from 13 species belonging to the Yarrowia clade. We identified putative TER loci, analyzed their sequence and secondary structure conservation, and predicted functional elements. Moreover, in vivo complementation assays with mutant TERs showed the functional importance of four novel TER substructures. The TER-derived telomeric repeat unit of all species, except for one, is 10?bp long and can be represented as 5'-TTNNNNAGGG-3', with repeat sequence variations occuring primarily outside the vertebrate telomeric motif 5'-TTAGGG-3'. All species possess a homologue of the Yarrowia lipolytica Tay1 protein, YlTay1p. In vitro, YlTay1p displays comparable DNA-binding affinity to all repeat variants, suggesting a conserved role among these species. Taken together, these results add significant insights into the co-evolution of TERs, telomeric repeats and telomere-binding proteins in yeasts.
机译:亚甲氧化尿的真菌中的端粒重复表现出很大的和物种内部的变异性长度和序列。这种变异挑战了端粒体DNA结合蛋白,其共同进化以维持它们在端粒的功能。在这里,我们比较在端粒酶RNA(TERS)中的细胞体重复的共变化的程度,以及来自属于Yarrowia Clade的13种物种的重复结合蛋白。我们识别推定的TER LOCI,分析了它们的序列和二级结构保守,并预测的功能元件。此外,在具有突变体的体内互补测定中显示出四个新颖的​​三个子结构的功能重要性。除了一个之外,所有物种的TER衍生的端粒重复单元是10?BP长并且可以表示为5'-TTNNNAGGG-3',重复序列变化主要发生在脊​​椎动物端口图案5'-TTAGGG-3之外。 '。所有物种均具有Yarrowia Lipolytica Tay1蛋白,Yltay1P的同源物。在体外,YLTay1P显示对所有重复变体的相当的DNA结合亲和力,表明这些物种之间的保守作用。总之,这些结果增加了酵母中的特定,端粒重复和端粒结合蛋白的共同演变的显着洞察。

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