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真核生物中编码内在无序的基因具有高GC含量。

Genes encoding intrinsic disorder in Eukaryota have high GC content.

作者信息

Peng Zhenling, Uversky Vladimir N, Kurgan Lukasz

机构信息

Center for Applied Mathematics, Tianjin University , Tianjin, China.

Department of Molecular Medicine and Byrd Alzheimer Research Institute, Morsani College of Medicine, University of South Florida, Tampa, FL, USA; Laboratory of Structural Dynamics, Stability and Folding of Proteins, Institute of Cytology, Russian Academy of Sciences, St. Petersburg, Russia.

出版信息

Intrinsically Disord Proteins. 2016 Dec 15;4(1):e1262225. doi: 10.1080/21690707.2016.1262225. eCollection 2016.

Abstract

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 also investigate 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.

摘要

我们分析了12种真核生物基因中的GC含量与其相应蛋白质的内在无序水平之间的相关性。全面的计算分析表明,真核生物中的无序区域由富含GC的基因区域编码,并且这种富集与无序程度相关,并且存在于具有不同无序量特征的蛋白质和物种中。GC富集是无序区域中由富含GC的密码子编码的氨基酸比例较高的结果。不同物种之间单个氨基酸具有相同的GC含量分布。由富含GC的基因片段编码无序区域的真核生物蛋白质执行重要的生物学功能,包括与RNA、DNA、核苷酸相互作用,结合钙和金属离子,参与转录、运输、细胞分裂和某些信号通路,并且主要定位于细胞核、细胞质基质和细胞质中。我们还研究了GC含量、内在无序和蛋白质进化之间的可能关系。对设计的氨基酸“年龄”、它们的无序促进能力及其密码子的GC富集分析表明,早期氨基酸大多具有无序促进作用,其密码子富含GC,而大多数晚期氨基酸大多具有有序促进作用。

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