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关于肠道病毒与衰变加速因子相互作用的结构和功能见解。

Structural and functional insights into the interaction of echoviruses and decay-accelerating factor.

作者信息

Pettigrew David M, Williams David T, Kerrigan David, Evans David J, Lea Susan M, Bhella David

机构信息

Medical Research Council Virology Unit, Institute of Biomedical and Life Sciences, University of Glasgow, Scotland, United Kingdom.

出版信息

J Biol Chem. 2006 Feb 24;281(8):5169-77. doi: 10.1074/jbc.M510362200. Epub 2005 Nov 4.

Abstract

Many enteroviruses bind to the complement control protein decay-accelerating factor (DAF) to facilitate cell entry. We present here a structure for echovirus (EV) type 12 bound to DAF using cryo-negative stain transmission electron microscopy and three-dimensional image reconstruction to 16-A resolution, which we interpreted using the atomic structures of EV11 and DAF. DAF binds to a hypervariable region of the capsid close to the 2-fold symmetry axes in an interaction that involves mostly the short consensus repeat 3 domain of DAF and the capsid protein VP2. A bulge in the density for the short consensus repeat 3 domain suggests that a loop at residues 174-180 rearranges to prevent steric collision between closely packed molecules at the 2-fold symmetry axes. Detailed analysis of receptor interactions between a variety of echoviruses and DAF using surface plasmon resonance and comparison of this structure (and our previous work; Bhella, D., Goodfellow, I. G., Roversi, P., Pettigrew, D., Chaudhry, Y., Evans, D. J., and Lea, S. M. (2004) J. Biol. Chem. 279, 8325-8332) with reconstructions published for EV7 bound to DAF support major differences in receptor recognition among these viruses. However, comparison of the electron density for the two virus.receptor complexes (rather than comparisons of the pseudo-atomic models derived from fitting the coordinates into these densities) suggests that the dramatic differences in interaction affinities/specificities may arise from relatively subtle structural differences rather than from large-scale repositioning of the receptor with respect to the virus surface.

摘要

许多肠道病毒通过与补体调节蛋白衰变加速因子(DAF)结合来促进细胞进入。我们在此展示了12型回声病毒(EV)与DAF结合的结构,该结构通过冷冻负染透射电子显微镜和三维图像重建技术解析至16 Å分辨率,我们利用EV11和DAF的原子结构对其进行了解释。DAF与衣壳靠近2倍对称轴的高变区结合,这种相互作用主要涉及DAF的短共有重复序列3结构域和衣壳蛋白VP2。短共有重复序列3结构域密度中的一个凸起表明,174 - 180位残基处的一个环发生了重排,以防止在2倍对称轴处紧密堆积的分子之间发生空间碰撞。利用表面等离子体共振对多种回声病毒与DAF之间的受体相互作用进行详细分析,并将该结构(以及我们之前的工作;Bhella, D., Goodfellow, I. G., Roversi, P., Pettigrew, D., Chaudhry, Y., Evans, D. J., and Lea, S. M. (2004) J. Biol. Chem. 279, 8325 - 8332)与已发表的EV7与DAF结合的重建结构进行比较,结果表明这些病毒在受体识别方面存在重大差异。然而,对两种病毒 - 受体复合物的电子密度进行比较(而不是对将坐标拟合到这些密度中得到的伪原子模型进行比较)表明,相互作用亲和力/特异性的显著差异可能源于相对细微的结构差异,而不是受体相对于病毒表面的大规模重新定位。

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