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New computational methods reveal tRNA identity element divergence between Proteobacteria and Cyanobacteria

机译:新的计算方法揭示了变形杆菌和蓝细菌之间的tRNA身份元素差异

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摘要

There are at least 21 subfunctional classes of tRNAs in most cells that, despite a very highly conserved and compact common structure, must interact specifically with different cliques of proteins or cause grave organismal consequences. Protein recognition of specific tRNA substrates is achieved in part through class-restricted tRNA features called tRNA identity determinants. In earlier work we used TEAM, a statistical classifier of tRNA function, to show evidence of unexpectedly large diversity among bacteria in tRNA identity determinants. We also created a data reduction technique called function logos to visualize identity determinants for a given taxon. Here we show evidence that determinants for lysy-lated isoleucine tRNAs are not the same in Proteobacteria as in.other bacterial groups including the Cyanobacteria. Consistent with this, the lysylating biosynthetic enzyme TilS lacks a C-terminal domain in Cyanobacteria that is present in Proteobacteria. We present here, using function logos, a map estimating all potential identity determinants generally operational in Cyanobacteria and Proteobacteria. To further isolate the differences in potential tRNA identity determinants between Proteobacteria and Cyanobacteria, we created two new data reduction visualizations to contrast sequence and function logos between two taxa. One, called Information Difference logos (ID logos), shows the evolutionary gain or retention of functional information associated to features in one lineage. The other, Kullback-Leibler divergence Difference logos (KLD logos), shows recruitments or shifts in the functional associations of features, especially those informative in both lineages. We used these new logos to specifically isolate and visualize the differences in potential tRNA identity determinants between Proteobacteria and Cyanobacteria. Our graphical results point to numerous differences in potential tRNA identity determinants between these groups. Although more differences in general are explained by shifts in functional association rather than gains or losses, the apparent identity differences in lysylated isoleucine tRNAs appear to have evolved through both mechanisms.
机译:在大多数细胞中,至少有21种亚功能的tRNA,尽管它们具有非常高度保守和紧凑的通用结构,但它们必须与不同种类的蛋白质特异性相互作用或引起严重的生物后果。特定tRNA底物的蛋白质识别部分通过称为tRNA同一性决定因素的类别受限tRNA特征来实现。在较早的工作中,我们使用了tAM功能的统计分类器TEAM来显示tRNA同一性决定因素中细菌间出乎意料的巨大差异的证据。我们还创建了一种称为功能徽标的数据缩减技术,以可视化给定分类单元的身份决定因素。在这里,我们显示出证据,证明变形杆菌中赖氨酸相关的异亮氨酸tRNA的决定因素与包括蓝细菌在内的其他细菌群体不同。与此一致,裂解的生物合成酶TilS在蓝细菌中缺乏在Proteobacteria中存在的C末端结构域。我们在这里使用功能徽标呈现一张地图,该地图估算通常在蓝细菌和变形杆菌中运行的所有潜在身份决定因素。为了进一步分离变形杆菌和蓝细菌之间潜在的tRNA同一性决定因素的差异,我们创建了两个新的数据精简可视化来对比两个分类群之间的序列和功能徽标。其中一种称为信息差异徽标(ID徽标),用于显示与一个谱系中的要素相关的功能信息的进化获得或保留。另一个是Kullback-Leibler散度差异徽标(KLD徽标),用于显示功能的功能关联中的募集或转移,尤其是两种谱系中的信息性提示。我们使用这些新徽标来专门分离和可视化变形杆菌和蓝细菌之间潜在的tRNA身份决定因素的差异。我们的图形结果表明这些组之间潜在的tRNA同一性决定因素存在众多差异。尽管一般来说更多的差异是通过功能关联的改变而不是获得或丧失来解释的,但在赖氨酰化的异亮氨酸tRNA中,明显的身份差异似乎是通过这两种机制进化而来的。

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