首页> 美国卫生研究院文献>Journal of Virology >The Measles Virus Hemagglutinin β-Propeller Head β4-β5 Hydrophobic Groove Governs Functional Interactions with Nectin-4 and CD46 but Not Those with the Signaling Lymphocytic Activation Molecule
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The Measles Virus Hemagglutinin β-Propeller Head β4-β5 Hydrophobic Groove Governs Functional Interactions with Nectin-4 and CD46 but Not Those with the Signaling Lymphocytic Activation Molecule

机译:麻疹病毒血凝素β螺旋桨头β4-β5疏水槽控制与Nectin-4和CD46的功能性相互作用但不控制具有信号传递淋巴细胞活化分子的功能性相互作用

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摘要

Wild-type measles virus (MV) strains use the signaling lymphocytic activation molecule (SLAM; CD150) and the adherens junction protein nectin-4 (poliovirus receptor-like 4 [PVRL4]) as receptors. Vaccine MV strains have adapted to use ubiquitous membrane cofactor protein (MCP; CD46) in addition. Recently solved cocrystal structures of the MV attachment protein (hemagglutinin [H]) with each receptor indicate that all three bind close to a hydrophobic groove located between blades 4 and 5 (β4-β5 groove) of the H protein β-propeller head. We used this structural information to focus our analysis of the functional footprints of the three receptors on vaccine MV H. We mutagenized this protein and tested the ability of individual mutants to support cell fusion through each receptor. The results highlighted a strong overlap between the functional footprints of nectin-4 and CD46 but not those of SLAM. A soluble form of nectin-4 abolished vaccine MV entry in nectin-4- and CD46-expressing cells but only reduced entry through SLAM. Analyses of the binding kinetics of an H mutant with the three receptors revealed that a single substitution in the β4-β5 groove drastically reduced nectin-4 and CD46 binding while minimally altering SLAM binding. We also generated recombinant viruses and analyzed their infections in cells expressing individual receptors. Introduction of a single substitution into the hydrophobic pocket affected entry through both nectin-4 and CD46 but not through SLAM. Thus, while nectin-4 and CD46 interact functionally with the H protein β4-β5 hydrophobic groove, SLAM merely covers it. This has implications for vaccine and antiviral strategies.
机译:野生型麻疹病毒(MV)菌株使用信号传导的淋巴细胞激活分子(SLAM; CD150)和粘附连接蛋白nectin-4(脊髓灰质炎病毒受体样4 [PVRL4])作为受体。疫苗MV菌株还适合使用泛在膜辅助因子蛋白(MCP; CD46)。 MV附着蛋白(血凝素[H])与每种受体的新近解决的共晶体结构表明,所有这三个分子都与位于H蛋白β螺旋桨头的叶片4和5(β4-β5凹槽)之间的疏水凹槽紧密结合。我们使用该结构信息来重点分析疫苗MV H上三个受体的功能足迹。我们诱变了该蛋白并测试了单个突变体支持通过每个受体进行细胞融合的能力。结果强调了nectin-4和CD46的功能足迹之间有很强的重叠性,但SLAM却没有。 Nectin-4的可溶形式消除了疫苗的MV在Nectin-4和CD46表达细胞中的进入,但仅减少了通过SLAM的进入。 H突变体与这三个受体的结合动力学分析表明,β4-β5沟中的单个取代极大地降低了nectin-4和CD46的结合,同时最小化了SLAM结合。我们还产生了重组病毒,并分析了它们在表达单个受体的细胞中的感染情况。将单个取代引入疏水口袋会影响通过nectin-4和CD46的进入,但不会通过SLAM。因此,尽管nectin-4和CD46在功能上与H蛋白β4-β5疏水沟相互作用,但SLAM仅覆盖了它。这对疫苗和抗病毒策略有影响。

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