首页> 美国卫生研究院文献>Journal of Virology >Identification and Characterization of a Shared TNFR-Related Receptor for Subgroup B D and E Avian Leukosis Viruses Reveal Cysteine Residues Required Specifically for Subgroup E Viral Entry
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Identification and Characterization of a Shared TNFR-Related Receptor for Subgroup B D and E Avian Leukosis Viruses Reveal Cysteine Residues Required Specifically for Subgroup E Viral Entry

机译:鉴定和表征BD和E亚型禽白血病病毒的共享TNFR相关受体揭示了E亚型病毒进入所需的半胱氨酸残基

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摘要

Genetic and receptor interference data have indicated the presence of one or more cellular receptors for subgroup B, D, and E avian leukosis viruses (ALV) encoded by the s1 allele of the chicken tvb locus. Despite the prediction that these viruses use the same receptor, they exhibit a nonreciprocal receptor interference pattern: ALV-B and ALV-D can interfere with infection by all three viral subgroups, but ALV-E only interferes with infection by subgroup E viruses. We identified a tvbs1 cDNA clone which encodes a tumor necrosis factor receptor-related receptor for ALV-B, -D, and -E. The nonreciprocal receptor interference pattern was reconstituted in transfected human 293 cells by coexpressing the cloned receptor with the envelope (Env) proteins of either ALV-B or ALV-E. This pattern of interference was also observed when soluble ALV surface (SU)-immunoglobulin fusion proteins were bound to this cellular receptor before viral challenge. These data demonstrate that viral Env-receptor interactions can account for the nonreciprocal interference between ALV subgroups B, D, and E. Furthermore, they indicate that a single chicken gene located at tvbs1 encodes receptors for these three viral subgroups. The TVBS1 protein differs exclusively at residue 62 from the published subgroup B- and D-specific receptor, encoded by the s3 allele of tvb. Residue 62 is a cysteine in TVBS1 but is a serine in TVBS3, giving TVBS1 an even number of cysteines in the extracellular domain. We present evidence for a disulfide bond requirement in TVBS1 for ALV-E infection but not for ALV-B infection. Thus, ALV-B and ALV-E interact in fundamentally different ways with this shared receptor, a finding that may account for the observed biological differences between these two ALV subgroups.
机译:遗传和受体干扰数据表明,存在由鸡tvb基因座的s1等位基因编码的B,D和E亚型禽白血病病毒(ALV)的一种或多种细胞受体。尽管预测这些病毒使用相同的受体,但它们表现出不可逆的受体干扰模式:ALV-B和ALV-D可以干扰所有三个病毒亚组的感染,但是ALV-E仅干扰E亚组病毒的感染。我们鉴定了一个tvb s1 cDNA克隆,该克隆编码ALV-B,-D和-E的肿瘤坏死因子受体相关受体。通过将克隆的受体与ALV-B或ALV-E的包膜(Env)蛋白共表达,可在转染的人293细胞中重建不可逆的受体干扰模式。当可溶性ALV表面(SU)-免疫球蛋白融合蛋白在病毒攻击前与该细胞受体结合时,也观察到这种干扰模式。这些数据表明病毒Env-受体相互作用可以解释ALV B,D和E亚群之间的不可逆干扰。此外,它们还表明位于tvb s1 的单个鸡基因编码了这三个受体病毒亚组。 TVB S1 蛋白与tvb的s3等位基因编码的B-和D-亚特异性受体亚组在第62位残基处唯一不同。残基62是TVB S1 中的半胱氨酸,但是TVB S3 中的丝氨酸,使TVB S1 在细胞外结构域中具有半数半胱氨酸。我们为TVB S1 中的ALV-E感染提供了二硫键的要求,但ALV-B感染却没有。因此,ALV-B和ALV-E与该共享受体以根本不同的方式相互作用,这一发现可能解释了这两个ALV亚组之间观察到的生物学差异。

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