首页> 外文期刊>Virology Journal >Mapping of immunogenic and protein-interacting regions at the surface of the seven-bladed β-propeller domain of the HIV-1 cellular interactor EED
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Mapping of immunogenic and protein-interacting regions at the surface of the seven-bladed β-propeller domain of the HIV-1 cellular interactor EED

机译:HIV-1细胞相互作用物EED的七叶形β螺旋结构域表面的免疫原性和蛋白质相互作用区域的图谱

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Background The human EED protein, a member of the superfamily of Polycomb group proteins, is involved in multiple cellular protein complexes. Its C-terminal domain, which is common to the four EED isoforms, contains seven repeats of a canonical WD-40 motif. EED is an interactor of three HIV-1 proteins, matrix (MA), integrase (IN) and Nef. An antiviral activity has been found to be associated with isoforms EED3 and EED4 at the late stage of HIV-1 replication, due to a negative effect on virus assembly and genomic RNA packaging. The aim of the present study was to determine the regions of the EED C-terminal core domain which were accessible and available to protein interactions, using three-dimensional (3D) protein homology modelling with a WD-40 protein of known structure, and epitope mapping of anti-EED antibodies. Results Our data suggested that the C-terminal domain of EED was folded as a seven-bladed β-propeller protein. During the completion of our work, crystallographic data of EED became available from co-crystals of the EED C-terminal core with the N-terminal domain of its cellular partner EZH2. Our 3D-model was in good congruence with the refined structural model determined from crystallographic data, except for a unique α-helix in the fourth β-blade. More importantly, the position of flexible loops and accessible β-strands on the β-propeller was consistent with our mapping of immunogenic epitopes and sites of interaction with HIV-1 MA and IN. Certain immunoreactive regions were found to overlap with the EZH2, MA and IN binding sites, confirming their accessibility and reactivity at the surface of EED. Crystal structure of EED showed that the two discrete regions of interaction with MA and IN did not overlap with each other, nor with the EZH2 binding pocket, but were contiguous, and formed a continuous binding groove running along the lateral face of the β-propeller. Conclusion Identification of antibody-, MA-, IN- and EZH2-binding sites at the surface of the EED isoform 3 provided a global picture of the immunogenic and protein-protein interacting regions in the EED C-terminal domain, organized as a seven-bladed β-propeller protein. Mapping of the HIV-1 MA and IN binding sites on the 3D-model of EED core predicted that EED-bound MA and IN ligands would be in close vicinity at the surface of the β-propeller, and that the occurrence of a ternary complex MA-EED-IN would be possible.
机译:背景技术人EED蛋白是Polycomb组蛋白超家族的成员,参与多种细胞蛋白复合物。它的C末端结构域是四个EED同工型共有的结构,包含标准WD-40基序的七个重复。 EED是三种HIV-1蛋白,基质(MA),整合酶(IN)和Nef的相互作用体。由于对病毒装配和基因组RNA包装的负面影响,已发现在HIV-1复制的晚期,抗病毒活性与亚型EED3和EED4有关。本研究的目的是使用具有已知结构的WD-40蛋白质和表位的三维(3D)蛋白质同源性模型,确定EED C末端核心结构域的区域,该区域可用于蛋白质相互作用。 EED抗体的定位图。结果我们的数据表明,EED的C末端结构域折叠成7叶片的β螺旋桨蛋白。在我们的工作完成期间,EED的晶体学数据可从EED C末端核心与其细胞伴侣EZH2的N末端结构域的共晶体中获得。我们的3D模型与根据晶体学数据确定的精细结构模型具有良好的一致性,除了第四个β叶片中独特的α螺旋。更重要的是,β螺旋桨上的柔性环和可及的β链的位置与我们对免疫原性抗原表位以及与HIV-1 MA和IN相互作用的位点的定位一致。发现某些免疫反应性区域与EZH2,MA和IN结合位点重叠,证实了它们在EED表面的可及性和反应性。 EED的晶体结构表明,与MA和IN相互作用的两个离散区域不相互重叠,也不与EZH2结合口袋重叠,而是连续的,并形成了沿β螺旋桨侧面延伸的连续结合槽。 。结论鉴定EED同工型3表面的抗体,MA,IN和EZH2结合位点可提供EED C端结构域中的免疫原性和蛋白质-蛋白质相互作用区域的整体图,该区域由七个叶片β-螺旋桨蛋白。在EED核心的3D模型上绘制HIV-1 MA和IN结合位点的图谱预测,与EED结合的MA和IN配体将在β螺旋桨表面附近,并且三元复合物的出现MA-EED-IN是可能的。

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