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Evolution and Quantitative Comparison of Genome-Wide Protein Domain Distributions

机译:全基因组蛋白质结构域分布的进化和定量比较

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The metabolic and regulatory capabilities of an organism are implicit in its protein content. This is often hard to estimate, however, due to ascertainment biases inherent in the available genome annotations. Its complement of recognizable functional protein domains and their combinations convey essentially the same information and at the same time are much more readily accessible, although protein domain models trained for one phylogenetic group frequently fail on distantly related sequences. Pooling related domain models based on their GO-annotation in combination with de novo gene prediction methods provides estimates that seem to be less affected by phylogenetic biases. We show here for 18 diverse representatives from all eukaryotic kingdoms that a pooled analysis of the tendencies for co-occurrence or avoidance of protein domains is indeed feasible. This type of analysis can reveal general large-scale patterns in the domain co-occurrence and helps to identify lineage-specific variations in the evolution of protein domains. Somewhat surprisingly, we do not find strong ubiquitous patterns governing the evolutionary behavior of specific functional classes. Instead, there are strong variations between the major groups of Eukaryotes, pointing at systematic differences in their evolutionary constraints.
机译:生物体的代谢和调节能力隐含在其蛋白质含量中。但是,由于可用的基因组注释中固有的确定性偏倚,这通常很难估计。它的可识别功能蛋白结构域的互补及其组合传达的信息基本相同,并且同时更容易获得,尽管针对一个系统发生群训练的蛋白结构域模型经常在远距离相关的序列上失败。基于它们的GO注释与de novo基因预测方法相结合的合并相关域模型提供的估计似乎受系统发育偏差的影响较小。我们在这里显示了来自所有真核生物王国的18个不同代表,对共同出现或避免蛋白质结构域的趋势进行汇总分析确实是可行的。这种类型的分析可以揭示结构域共现中的一般大规模模式,并有助于确定蛋白质结构域进化中的谱系特异性变异。令人惊讶的是,我们没有发现支配特定功能类的进化行为的强大的普遍模式。取而代之的是,各主要真核生物之间存在很大的差异,指出了它们进化限制的系统差异。

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