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Genes encoding intrinsic disorder in Eukaryota have high GC content

机译:基因编码真核生物的内在障碍有高GC含量

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摘要

We analyze a correlation between the GC content in genes of 12 eukaryotic species and the level of intrinsic disorder in their corresponding proteins. Comprehensive computational analysis has revealed that the disordered regions in eukaryotes are encoded by the GC-enriched gene regions and that this enrichment is correlated with the amount of disorder and is present across proteins and species characterized by varying amounts of disorder. The GC enrichment is a result of higher rate of amino acid coded by GC-rich codons in the disordered regions. Individual amino acids have the same GC-content profile between different species. Eukaryotic proteins with the disordered regions encoded by the GC-enriched gene segments carry out important biological functions including interactions with RNAs, DNAs, nucleotides, binding of calcium and metal ions, are involved in transcription, transport, cell division and certain signaling pathways, and are localized primarily in nucleus, cytosol and cytoplasm. We alsoinvestigate a possible relationship between GC content, intrinsic disorder and protein evolution. Analysis of a devised “age” of amino acids, their disorder-promoting capacity and the GC-enrichment of their codons suggests that the early amino acids are mostly disorder-promoting and their codons are GC-rich while most of late amino acids are mostly order-promoting.
机译:我们分析一个GC含量之间的相关性12基因真核物种和水平相应的内在障碍蛋白质。显示,无序地区吗真核生物是由GC-enriched编码的基因地区和这个浓缩是相关的的障碍和存在蛋白质和物种不同的特征大量的障碍。较高的氨基酸编码率的结果GC-rich密码子在无序区域。个别氨基酸GC-content相同不同物种之间的配置文件。蛋白质与无序区域编码GC-enriched基因片段进行重要生物功能包括相互作用rna、dna核苷酸,钙和绑定金属离子参与转录,运输、细胞分裂和特定的信号通路,本地化主要在细胞核,胞质和胞浆。可能的GC含量之间的关系,内在的障碍和蛋白质进化。分析设计了“时代”的氨基酸,他们和GC-enrichment disorder-promoting能力他们的密码子表明早期的氨基酸酸是主要disorder-promoting及其氨基酸密码子GC-rich而大多数迟到大多是order-promoting。

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