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Waggawagga-CLI: A command-line tool for predicting stable single α-helices (SAH-domains), and the SAH-domain distribution across eukaryotes

机译:Waggawagga-CLI:一种命令行工具,用于预测稳定的单个α螺旋(SAH域)以及跨真核生物的SAH域分布

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摘要

Stable single-alpha helices (SAH-domains) function as rigid connectors and constant force springs between structural domains, and can provide contact surfaces for protein-protein and protein-RNA interactions. SAH-domains mainly consist of charged amino acids and are monomeric and stable in polar solutions, characteristics which distinguish them from coiled-coil domains and intrinsically disordered regions. Although the number of reported SAH-domains is steadily increasing, genome-wide analyses of SAH-domains in eukaryotic genomes are still missing. Here, we present Waggawagga-CLI, a command-line tool for predicting and analysing SAH-domains in protein sequence datasets. Using Waggawagga-CLI we predicted SAH-domains in 24 datasets from eukaryotes across the tree of life. SAH-domains were predicted in 0.5 to 3.5% of the protein-coding content per species. SAH-domains are particularly present in longer proteins supporting their function as structural building block in multi-domain proteins. In human, SAH-domains are mainly used as alternative building blocks not being present in all transcripts of a gene. Gene ontology analysis showed that yeast proteins with SAH-domains are particular enriched in macromolecular complex subunit organization, cellular component biogenesis and RNA metabolic processes, and that they have a strong nuclear and ribonucleoprotein complex localization and function in ribosome and nucleic acid binding. Human proteins with SAH-domains have roles in all types of RNA processing and cytoskeleton organization, and are predicted to function in RNA binding, protein binding involved in cell and cell-cell adhesion, and cytoskeletal protein binding. Waggawagga-CLI allows the user to adjust the stabilizing and destabilizing contribution of amino acid interactions in i,i+3 and i,i+4 spacings, and provides extensive flexibility for user-designed analyses.
机译:稳定的单α螺旋(SAH域)充当刚性连接器和结构域之间的恒力弹簧,并可以为蛋白质-蛋白质和蛋白质-RNA相互作用提供接触表面。 SAH结构域主要由带电荷的氨基酸组成,在极性溶液中呈单体状态且稳定,其特征与卷曲螺旋结构域和固有无序区域不同。尽管报告的SAH域的数量在稳步增加,但仍然缺少真核基因组中SAH域的全基因组分析。在这里,我们介绍Waggawagga-CLI,这是一种用于预测和分析蛋白质序列数据集中SAH域的命令行工具。使用Waggawagga-CLI,我们从生命树中的真核生物中预测了24个数据集中的SAH域。预测每个物种中SAH域的蛋白质编码含量为0.5%至3.5%。 SAH结构域特别存在于较长的蛋白质中,以支持其作为多结构域蛋白质中的结构构件。在人类中,SAH结构域主要用作并非在基因的所有转录物中都存在的替代构件。基因本体分析表明,具有SAH结构域的酵母蛋白在大分子复合物亚基的组织,细胞成分的生物发生和RNA代谢过程中特别丰富,并且它们在核糖体和核糖核酸蛋白复合物中具有较强的定位和功能。具有SAH结构域的人类蛋白质在所有类型的RNA加工和细胞骨架组织中均具有作用,并被预测在RNA结合,参与细胞和细胞与细胞粘附的蛋白质结合以及细胞骨架蛋白质结合中发挥作用。 Waggawagga-CLI允许用户调整i,i + 3和i,i + 4间距中氨基酸相互作用的稳定和去稳定作用,并为用户设计的分析提供了广泛的灵活性。

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