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首页> 外文期刊>The Protein Journal >A New Bioinformatics Approach to Natural Protein Collections: Permutation Structure Contrasts of Viral and Cellular Systems
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A New Bioinformatics Approach to Natural Protein Collections: Permutation Structure Contrasts of Viral and Cellular Systems

机译:天然蛋白质收集的新生物信息学方法:病毒和细胞系统的排列结构对比

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摘要

Biological cells and viruses operate by different replication and symmetry paradigms. Cells are able to replicate independently and express little spatial symmetry; viruses require cells for replication while manifesting high symmetry. The author inquired whether different paradigms were reflected in the permutations of amino acid sequences. The hypothesis was that the permutation structure level and symmetry within viral protein collections exceed that of living cells. The rationale was that one symmetry aspect generally accompanies and promotes others in a system. The inquiry was readily answered given abundant sequence archives for proteins. The analysis of collections from diverse viral and cellular sources lends strong support. Additional insights into protein primary structure, the design of collections, and the role of information are provided as well.
机译:生物细胞和病毒通过不同的复制和对称范例进行操作。细胞能够独立复制并且几乎不表达空间对称性。病毒需要细胞复制,同时表现出高度的对称性。作者询问氨基酸序列的排列是否反映了不同的范例。假设是病毒蛋白集合中的排列结构水平和对称性超过了活细胞。理由是,一个对称方面通常会伴随并促进系统中的其他方面。鉴于蛋白质的大量序列档案,该查询很容易回答。对来自各种病毒和细胞来源的收集物的分析提供了有力的支持。还提供了有关蛋白质一级结构,集合设计和信息作用的其他见解。

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