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人α干扰素共有序列的三维模型。

Three-dimensional model of a human interferon-alpha consensus sequence.

作者信息

Korn A P, Rose D R, Fish E N

机构信息

Department of Microbiology, University of Toronto, Ontario, Canada.

出版信息

J Interferon Res. 1994 Feb;14(1):1-9. doi: 10.1089/jir.1994.14.1.

Abstract

A computer-built, three-dimensional, atomic-level model for human interferon-alpha (IFN-alpha) was constructed. This model was prepared using the primary amino acid sequence of consensus IFN-alpha (IFN-alpha Con1) and the alpha-carbon Cartesian coordinates of murine IFN-beta as a homolog guide to the model building. In agreement with an earlier report from this laboratory, the two domains 29-35 and 123-140 are in close spatial proximity in this model, and may constitute a receptor recognition domain, whereas the region bounded by residues 78-95 is somewhat removed from this region on the molecule and may constitute an alternative active site. Extrapolating from the model, we propose that, of the stretch 123-140, the residues that are exposed are 123, 125, 126, 128-130, and 132-139; and of the stretch 29-35, all are accessible. Additionally, we propose that there may be sufficient complexity in the Type 1 IFN receptor to account for the differential sensitivities between IFN-alpha s and IFN-beta that may be associated with residue differences in the region 78-95, specifically at residues 84, 86, and 87. This model conforms with experimental data that identify specific amino acid residues in human IFN-alpha that either do, or do not, affect the active conformation and biological activities of the molecule.

摘要

构建了一个计算机生成的人α干扰素(IFN-α)三维原子水平模型。该模型是利用共有IFN-α(IFN-α Con1)的一级氨基酸序列以及鼠IFN-β的α-碳笛卡尔坐标作为同源模板来构建的。与本实验室早期的一份报告一致,在该模型中,29 - 35和123 - 140这两个结构域在空间上紧密相邻,可能构成一个受体识别结构域,而由78 - 95位残基界定的区域在分子上与该区域稍有距离,可能构成一个替代活性位点。从该模型推断,我们提出,在123 - 140片段中,暴露的残基是123、125、126、128 - 130和132 - 139;在29 - 35片段中,所有残基都是可及的。此外,我们提出1型IFN受体可能具有足够的复杂性,以解释IFN-α和IFN-β之间的差异敏感性,这可能与78 - 95区域的残基差异有关,特别是84、86和87位残基。该模型与实验数据相符,这些实验数据确定了人IFN-α中影响或不影响分子活性构象和生物学活性的特定氨基酸残基。

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