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基于内部三重重复、亲水性/疏水性特征以及结构域二级结构的人铜蓝蛋白结构模型。

Structural model of human ceruloplasmin based on internal triplication, hydrophilic/hydrophobic character, and secondary structure of domains.

作者信息

Ortel T L, Takahashi N, Putnam F W

出版信息

Proc Natl Acad Sci U S A. 1984 Aug;81(15):4761-5. doi: 10.1073/pnas.81.15.4761.

Abstract

A molecular model for the structure of human ceruloplasmin is proposed that is based on the determination of the complete amino acid sequence, studies of the products of limited proteolytic cleavage, calculations of the hydrophilic/hydrophobic character (hydropathy profile), and predictions of the local secondary structure. This multicopper oxidase (Mr approximately 132,000) consists of a single polypeptide chain (1046 amino acid residues) with four attached glucosamine oligosaccharides. Computer-assisted statistical analysis of the internal repetition in the amino acid sequence confirms that the entire polypeptide chain is divided into three contiguous homology units, each containing about 350 amino acid residues. Each homology unit is subdivided into three domains, designated A1, A2, and B, that differ in structure and probably in function. Calculations of the hydropathy profile and predictions of the secondary structure support a molecular model based on internal repetition of three homology units and help to identify characteristic features of the interdomain junctions. The alignment scores for internal duplication of pairings of the three homology units of ceruloplasmin exceed the scores yet reported for contiguous internal duplication of any other protein. This highly significant evidence for intragenic repetition suggests that the ceruloplasmin molecule evolved by tandem triplication of ancestral genes coding for a primordial copper oxidase.

摘要

基于对完整氨基酸序列的测定、有限蛋白水解产物的研究、亲水/疏水特性(亲水性分布图)的计算以及局部二级结构的预测,提出了一种人铜蓝蛋白结构的分子模型。这种多铜氧化酶(Mr约为132,000)由一条带有四个连接的葡糖胺寡糖的单一多肽链(1046个氨基酸残基)组成。对氨基酸序列内部重复的计算机辅助统计分析证实,整个多肽链分为三个连续的同源单位,每个单位包含约350个氨基酸残基。每个同源单位又细分为三个结构域,分别命名为A1、A2和B,它们在结构上可能在功能上也有所不同。亲水性分布图的计算和二级结构的预测支持了基于三个同源单位内部重复的分子模型,并有助于识别结构域间连接的特征。铜蓝蛋白三个同源单位配对的内部重复比对分数超过了迄今报道的任何其他蛋白质连续内部重复的分数。这种基因内重复的高度显著证据表明,铜蓝蛋白分子是由编码原始铜氧化酶的祖先基因串联三倍化进化而来的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/57e0/391570/e514d87c66f3/pnas00616-0153-a.jpg

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