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干扰素τ的预测结构基序。

Predicted structural motif of IFN tau.

作者信息

Jarpe M A, Johnson H M, Bazer F W, Ott T L, Curto E V, Krishna N R, Pontzer C H

机构信息

Department of Physiology and Biophysics, University of Alabama at Birmingham 35294.

出版信息

Protein Eng. 1994 Jul;7(7):863-7. doi: 10.1093/protein/7.7.863.

Abstract

Ovine interferon tau (IFN tau) is a type I interferon that was originally identified as ovine trophoblast protein and is associated with the maternal recognition of pregnancy in sheep. Additionally, IFN tau possesses potent antiviral and antiproliferative activity without the corresponding toxicity found in known IFN alpha s. Structure-function studies with synthetic peptides have identified three discontinuous functional sites on the protein that are involved in receptor interaction and biological activity. However, the structural relationship of these regions is unknown. Therefore, a model relationship of these regions is unknown. Therefore, a model of the 3-D structure of IFN tau would be useful in interpretation of existing data and the design of future structure-function studies. Combining information from circular dichroism (CD) of both the full length recombinant IFN tau and synthetic peptides representing regions of the IFN tau molecule, with sequence homology of IFN tau to IFN beta, a protein of known 3-D structure, we have constructed a model of IFN tau using distance geometry and energy minimization methods. The most striking feature of this model is that functionally active domains of IFN tau, discontinuous in the primary structure, are localized to one side of the molecule and found to be spatially contiguous. This observation is consistent with multiple binding sites on IFN tau interacting simultaneously with the IFN tau receptor.

摘要

绵羊干扰素τ(IFNτ)是一种I型干扰素,最初被鉴定为绵羊滋养层蛋白,与绵羊母体对妊娠的识别有关。此外,IFNτ具有强大的抗病毒和抗增殖活性,而没有已知的IFNα所具有的相应毒性。对合成肽进行的结构-功能研究已确定该蛋白上三个不连续的功能位点,它们参与受体相互作用和生物活性。然而,这些区域的结构关系尚不清楚。因此,这些区域的模型关系也未知。因此,IFNτ的三维结构模型将有助于解释现有数据并设计未来的结构-功能研究。结合全长重组IFNτ和代表IFNτ分子区域的合成肽的圆二色性(CD)信息,以及IFNτ与已知三维结构的蛋白IFNβ的序列同源性,我们使用距离几何和能量最小化方法构建了IFNτ的模型。该模型最显著的特征是,IFNτ的功能活性结构域在一级结构中不连续,却定位在分子的一侧,并且在空间上是相邻的。这一观察结果与IFNτ上的多个结合位点同时与IFNτ受体相互作用是一致的。

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