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Domain dislocation: a change of core structure in periplasmic binding proteins in their evolutionary history.

机译:域错位:周质结合蛋白在其进化史中核心结构的变化。

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Periplasmic binding proteins (PBPs) serve as receptors for various water-soluble ligands in ATP-binding cassette (ABC) transport systems, and form one of the largest protein families in eubacterial and archaebacterial genomes. They are considered to be derived from a common ancestor, judging from their similarities of three-dimensional structure, their mechanism of ligand binding and the operon structure of their genes. Nevertheless, there are two types of topological arrangements of the central beta-sheets in their core structures. It follows that there must have been differentiation in the core structure, which we call "domain dislocation", in the course of evolution of the PBP family. To find a clue as to when the domain dislocation occurred, we constructed phylogenetic trees for PBPs based on their amino acid sequences and three-dimensional structures, respectively. The trees show that the proteins of each type clearly cluster together, strongly indicating that the change in the core structure occurred only once in the evolution of PBPs. We also constructed a phylogenetic tree for the ABC proteins that are encoded by the same operon of their partner PBP, and obtained the same result. Based on the phylogenetic relationship and comparison of the topological arrangements of PBPs, we obtained a reasonable genealogical chart of structural changes in the PBP family. The present analysis shows that the unidirectional change of protein evolution is clearly deduced at the level of protein three-dimensional structure rather than the level of amino acid sequence. Copyright 1999 Academic Press.
机译:周质结合蛋白(PBP)充当ATP结合盒(ABC)转运系统中各种水溶性配体的受体,并形成真细菌和古细菌基因组中最大的蛋白质家族之一。从它们的三维结构相似性,它们的配体结合机理和基因的操纵子结构来看,它们被认为是共同祖先衍生的。但是,中央β-折叠在其核心结构中有两种拓扑排列。因此,在PBP家族的发展过程中,核心结构必定存在差异,我们称之为“域位错”。为了找到何时发生域位错的线索,我们分别基于PBP的氨基酸序列和三维结构构建了系统树。这些树表明每种类型的蛋白质都清楚地聚集在一起,强烈表明核心结构的变化仅在PBP的进化过程中发生过一次。我们还为由其伴侣PBP的相同操纵子编码的ABC蛋白构建了系统树,并获得了相同的结果。基于亲缘关系和PBP拓扑结构的比较,我们获得了PBP家族结构变化的合理族谱图。目前的分析表明,蛋白质进化的单向变化显然是在蛋白质三维结构的水平而非氨基酸序列的水平推论的。版权所有1999,学术出版社。

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