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Mapping of Equine Lentivirus Receptor 1 Residues Critical for Equine Infectious Anemia Virus Envelope Binding▿

机译:马慢病毒受体1残基的映射对马传染性贫血病毒包膜结合至关重要

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摘要

The equine lentivirus receptor 1 (ELR1), a member of the tumor necrosis factor receptor (TNFR) protein family, has been identified as a functional receptor for equine infectious anemia virus (EIAV). Toward defining the functional interactions between the EIAV SU protein (gp90) and its ELR1 receptor, we mapped the gp90 binding domain of ELR1 by a combination of binding and functional assays using the EIAV SU gp90 protein and various chimeric receptor proteins derived from exchanges between the functional ELR1 and the nonbinding homolog, mouse herpesvirus entry mediator (murine HveA). Complementary exchanges of the respective cysteine-rich domains (CRD) between the ELR1 and murine HveA proteins revealed CRD1 as the predominant determinant of functional gp90 binding to ELR1 and also to a chimeric murine HveA protein expressed on the surface of transfected Cf2Th cells. Mutations of individual amino acids in the CRD1 segment of ELR1 and murine HveA indicated the Leu70 in CRD1 as essential for functional binding of EIAV gp90 and for virus infection of transduced Cf2Th cells. The specificity of the EIAV SU binding domain identified for the ELR1 receptor is fundamentally identical to that reported previously for functional binding of feline immunodeficiency virus SU to its coreceptor CD134, another TNFR protein. These results indicate unexpected common features of the specific mechanisms by which diverse lentiviruses can employ TNFR proteins as functional receptors.
机译:马慢病毒受体1(ELR1)是肿瘤坏死因子受体(TNFR)蛋白家族的成员,已被确定为马传染性贫血病毒(EIAV)的功能性受体。为了定义EIAV SU蛋白(gp90)与它的ELR1受体之间的功能性相互作用,我们结合结合和功能分析,使用EIAV SU gp90蛋白和各种嵌合受体蛋白,绘制了ELR1的gp90结合结构域,并将它们结合功能性ELR1和非结合同源物,小鼠疱疹病毒进入介体(鼠HveA)。 ELR1和鼠类HveA蛋白之间的各自富含半胱氨酸的结构域(CRD)的互补交换显示CRD1是功能性gp90与ELR1以及与转染的Cf2Th细胞表面表达的嵌合鼠类HveA蛋白结合的主要决定因素。 ELR1和鼠HveA的CRD1区段中单个氨基酸的突变表明CRD1中的Leu70是EIAV gp90功能结合和转导的Cf2Th细胞病毒感染所必需的。针对ELR1受体鉴定的EIAV SU结合结构域的特异性与先前报道的猫免疫缺陷病毒SU与其共受体CD134(另一种TNFR蛋白)的功能结合的特异性基本相同。这些结果表明各种慢病毒可以利用TNFR蛋白作为功能受体的特定机制的出乎意料的共同特征。

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