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基于铜蓝蛋白-质体蓝素同源性的蓝色氧化酶活性位点模型。

Model of the active site in the blue oxidases based on the ceruloplasmin-plastocyanin homology.

作者信息

Rydén L

出版信息

Proc Natl Acad Sci U S A. 1982 Nov;79(22):6767-71. doi: 10.1073/pnas.79.22.6767.

Abstract

Available sequence information (a total of 650 residues out of about 1,050) of human ceruloplasmin, a blue copper-containing oxidase, has been examined for internal homologies and relationships to other blue proteins. The peptide chain has an evident 3-fold repeat of about 340 residues, and weak evidence for a 6-fold repeat of 170 residues exists. When another method was used to compare the longer sequence with the sequences of small blue proteins, azurins and plastocyanins, a 109-residue-long sequence at the COOH terminus of ceruloplasmin was found to be homologous to the plastocyanins. The alignment obtained was used to construct, on a graphic display, a three-dimensional model of this part of ceruloplasmin by using the coordinates for popular plastocyanin. Deletions and insertions could be accommodated in turns and kinks in the essentially eight-stranded pleated sheet molecule wherein each of the hydrophobic core residues was conserved or conservatively replaced. Eight of the 12 histidine side chains were clustered at or close to the binding site for the blue (type 1) copper. On the assumption that these are copper ligands, a model for the active site of ceruloplasmin containing four copper ions could be constructed in a manner consistent with known spectroscopic and kinetic data. In particular, two of the coppers are close enough (3 A) to form a binuclear center. The positions of the two additional coppers (the fifth and the sixth) in ceruloplasmin are suggested on the basis of the internal homologies.

摘要

人铜蓝蛋白是一种含蓝色铜的氧化酶,已对其现有序列信息(约1050个残基中的650个)进行了内部同源性以及与其他蓝色蛋白质关系的研究。肽链有明显的约340个残基的三重重复,并且存在约170个残基的六重重复的微弱证据。当使用另一种方法将较长序列与小的蓝色蛋白质(天青蛋白和质体蓝素)的序列进行比较时,发现铜蓝蛋白COOH末端109个残基长的序列与质体蓝素同源。利用得到的比对结果,通过使用常见质体蓝素的坐标,在图形显示器上构建了铜蓝蛋白这一部分的三维模型。在基本上为八链褶皱片层分子中,缺失和插入能够依次被容纳,并且每个疏水核心残基都得以保留或保守取代。12个组氨酸侧链中的8个聚集在蓝色(1型)铜的结合位点处或附近。假设这些是铜配体,就可以根据已知的光谱和动力学数据构建一个含四个铜离子的铜蓝蛋白活性位点模型。特别地,其中两个铜足够靠近(3埃)以形成双核中心。基于内部同源性推测了铜蓝蛋白中另外两个铜(第五个和第六个)的位置。

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