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6-磷酸-β-D-半乳糖苷酶超家族二级结构的一致性预测。

A consensus prediction of the secondary structure for the 6-phospho-beta-D-galactosidase superfamily.

作者信息

Gerloff D L, Benner S A

机构信息

Department of Chemistry, Swiss Federal Institute of Technology, Zürich.

出版信息

Proteins. 1995 Apr;21(4):273-81. doi: 10.1002/prot.340210402.

Abstract

Two separate unrefined models for the secondary structure of two subfamilies of the 6-phospho-beta-D-galactosidase superfamily were independently constructed by examining patterns of variation and conservation within homologous protein sequences, assigning surface, interior, parsing, and active site residues to positions in the alignment, and identifying periodicities in these. A consensus model for the secondary structure of the entire superfamily was then built. The prediction tests the limits of an unrefined prediction made using this approach in a large protein with substantial functional and sequence divergence within the family. The protein belongs to the (alpha-beta class), with the core beta strands aligned parallel. The supersecondary structural elements that are readily identified in this model is a parallel beta sheet built by strands C, D, and E, with helices 2 and 3 connecting strands (C+D) and (D+E), respectively, and an analogous beta-alpha unit (strand G and helix 7) toward the end of the sequence. The resemblance of the supersecondary model to the tertiary structure formed by 8-fold alpha-beta barrel proteins is almost certainly not coincidental.

摘要

通过检查同源蛋白质序列中的变异和保守模式,将表面、内部、解析和活性位点残基分配到比对中的位置,并识别其中的周期性,分别独立构建了6-磷酸-β-D-半乳糖苷酶超家族两个亚家族二级结构的两个未优化模型。然后构建了整个超家族二级结构的一致性模型。该预测检验了使用这种方法对一个在家族内具有大量功能和序列差异的大蛋白质进行未优化预测的极限。该蛋白质属于(α-β类),核心β链平行排列。在该模型中容易识别的超二级结构元件是由C、D和E链构建的平行β折叠,螺旋2和3分别连接(C+D)链和(D+E)链,以及序列末端类似的β-α单元(G链和螺旋7)。超二级模型与由8倍α-β桶状蛋白质形成的三级结构的相似性几乎肯定不是巧合。

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