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Canine Distemper Virus Fusion Activation: Critical Role of Residue E123 of CD150/SLAM.

机译:犬瘟热病毒融合激活:CD150 / SLAM的残留E123的关键作用。

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摘要

UNLABELLED\ud\udMeasles virus (MeV) and canine distemper virus (CDV) possess tetrameric attachment proteins (H) and trimeric fusion proteins, which cooperate with either SLAM or nectin 4 receptors to trigger membrane fusion for cell entry. While the MeV H-SLAM cocrystal structure revealed the binding interface, two distinct oligomeric H assemblies were also determined. In one of the conformations, two SLAM units were sandwiched between two discrete H head domains, thus spotlighting two binding interfaces ("front" and "back"). Here, we investigated the functional relevance of both interfaces in activating the CDV membrane fusion machinery. While alanine-scanning mutagenesis identified five critical regulatory residues in the front H-binding site of SLAM, the replacement of a conserved glutamate residue (E at position 123, replaced with A [E123A]) led to the most pronounced impact on fusion promotion. Intriguingly, while determination of the interaction of H with the receptor using soluble constructs revealed reduced binding for the identified SLAM mutants, no effect was recorded when physical interaction was investigated with the full-length counterparts of both molecules. Conversely, although mutagenesis of three strategically selected residues within the back H-binding site of SLAM did not substantially affect fusion triggering, nevertheless, the mutants weakened the H-SLAM interaction recorded with the membrane-anchored protein constructs. Collectively, our findings support a mode of binding between the attachment protein and the V domain of SLAM that is common to all morbilliviruses and suggest a major role of the SLAM residue E123, located at the front H-binding site, in triggering the fusion machinery. However, our data additionally support the hypothesis that other microdomain(s) of both glycoproteins (including the back H-binding site) might be required to achieve fully productive H-SLAM interactions.\ud\udIMPORTANCE\ud\udA complete understanding of the measles virus and canine distemper virus (CDV) cell entry molecular framework is still lacking, thus impeding the rational design of antivirals. Both viruses share many biological features that partially rely on the use of analogous Ig-like host cell receptors, namely, SLAM and nectin 4, for entering immune and epithelial cells, respectively. Here, we provide evidence that the mode of binding between the membrane-distal V domain of SLAM and the attachment protein (H) of morbilliviruses is very likely conserved. Moreover, although structural information revealed two discrete conformational states of H, one of the structures displayed two H-SLAM binding interfaces ("front" and "back"). Our data not only spotlight the front H-binding site of SLAM as the main determinant of membrane fusion promotion but suggest that the triggering efficiency of the viral entry machinery may rely on a local conformational change within the front H-SLAM interactive site rather than the binding affinity.
机译:麻疹病毒(MeV)和犬瘟热病毒(CDV)具有四聚体附着蛋白(H)和三聚体融合蛋白,它们与SLAM或nectin 4受体协同作用,触发膜融合进入细胞。尽管MeV H-SLAM共晶体结构揭示了结合界面,但还确定了两个不同的低聚H组装体。在一种构型中,两个SLAM单元被夹在两个离散的H头结构域之间,从而突出了两个结合界面(“前”和“后”)。在这里,我们调查了两个界面在激活CDV膜融合机器中的功能相关性。虽然丙氨酸扫描诱变在SLAM的前H结合位点识别出五个关键的调控残基,但保守谷氨酸残基的取代(位置123的E,被A [E123A]取代)对融合促进的影响最为明显。有趣的是,尽管使用可溶性构建体确定了H与受体的相互作用,发现与已鉴定的SLAM突变体的结合减少,但是当用两个分子的全长对应物研究物理相互作用时,没有发现任何作用。相反,尽管诱变在SLAM的背面H结合位点内三个策略性选择的残基基本上不影响融合触发,但是,突变体减弱了膜锚定蛋白质构建体记录的H-SLAM相互作用。总的来说,我们的研究结果支持了附着蛋白与SLAM V结构域之间的结合模式,这种模式是所有麻疹病毒所共有的,并表明位于前H结合位点的SLAM残基E123在触发融合机制中起主要作用。 。但是,我们的数据还支持以下假设:可能需要两个糖蛋白的其他微区(包括背部H结合位点)来实现完全有效的H-SLAM相互作用。\ ud \ udIMPORTANCE \ ud \ ud麻疹病毒和犬瘟热病毒(CDV)细胞进入分子的框架仍然缺乏,从而阻碍了抗病毒药物的合理设计。两种病毒都有许多生物学特征,这些生物学特征部分地依赖于使用类似Ig样宿主细胞受体(即SLAM和nectin 4)来分别进入免疫细胞和上皮细胞。在这里,我们提供的证据表明,SLAM的膜远侧V结构域与麻疹病毒的附着蛋白(H)之间的结合模式非常可能被保守。此外,尽管结构信息显示了H的两个离散构象状态,但结构之一显示了两个H-SLAM结合界面(“前”和“后”)。我们的数据不仅着眼于SLAM的前H结合位点是促进膜融合的主要决定因素,而且表明病毒进入机制的触发效率可能取决于前H-SLAM相互作用位点的局部构象变化,而不是结合亲和力。

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