首页> 美国卫生研究院文献>Journal of Virology >Comparative analysis of adenovirus fiber-cell interaction: adenovirus type 2 (Ad2) and Ad9 utilize the same cellular fiber receptor but use different binding strategies for attachment.
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Comparative analysis of adenovirus fiber-cell interaction: adenovirus type 2 (Ad2) and Ad9 utilize the same cellular fiber receptor but use different binding strategies for attachment.

机译:腺病毒纤维-细胞相互作用的比较分析:2型腺病毒(Ad2)和Ad9利用相同的细胞纤维受体但使用不同的结合策略进行附着。

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摘要

We have analyzed the binding of adenovirus (Ad) serotypes from subgroups B, C, and D through fiber-virus and fiber-fiber cross-competition experiments. Since viruses in these distinct subgroups display markedly different tropisms, it was unexpected that the subgroup C viruses Ad2 and 5 and the subgroup D virus Ad9 cross-competed for the same cellular fiber receptor. The subgroup B serotype Ad3 recognized a receptor distinct from the Ad2, 5, and 9 fiber receptor. However, despite sharing the same fiber receptor, Ad2 and Ad9 displayed markedly different binding characteristics that appeared to result from direct Ad9 binding to cells via alpha(v)-integrins. Unlike Ad2, Ad9 binding to many cell lines was not abrogated by competition with the fiber 9 knob (F9K). Ad9 binding to fiber receptor-deficient cells was blocked by a monoclonal antibody to alpha(v)-integrins. In contrast, Ad9 binding to alpha(v)-deficient cells that express fiber receptor was blocked by F9K. Transfection of an alpha(v)-integrin-deficient cell line with a plasmid that expresses alpha(v)beta5 resulted in Ad9 binding that was not significantly blocked by F9K but was blocked with a combination of F9K and penton base. These results imply that the shorter length of fiber 9 (11 nm) relative to fiber 2 (37 nm) permits fiber-independent binding of Ad9 penton base to alpha(v)-integrins. The difference in fiber length may explain the different binding characteristics and tissue tropisms of each virus despite both utilizing the same fiber and penton base receptors.
机译:我们已经通过纤维病毒和纤维-纤维交叉竞争实验分析了来自亚组B,C和D的腺病毒(Ad)血清型的结合。由于这些不同亚组中的病毒显示出显着不同的向性,因此出乎意料的是,亚组C病毒Ad2和5与亚组D病毒Ad9与同一细胞纤维受体发生交叉竞争。 B亚型血清型Ad3识别不同于Ad2、5和9纤维受体的受体。然而,尽管共享相同的纤维受体,但Ad2和Ad9显示出明显不同的结合特性,这似乎是由于Ad9通过α(v)-整联蛋白与细胞直接结合而引起的。与Ad2不同,与纤维9旋钮(F9K)竞争并未消除与许多细胞系结合的Ad9。 Ad9与纤维受体缺陷细胞的结合被针对alpha(v)-整合素的单克隆抗体所阻断。相反,Ad9与表达纤维受体的alpha(v)缺陷细胞的结合被F9K阻断。用表达alpha(v)beta5的质粒转染alpha(v)-整合素缺陷型细胞系会导致Ad9结合,该结合并未被F9K显着阻断,但被F9K和戊烯碱的结合所阻断。这些结果表明,相对于纤维2(37 nm)而言,纤维9(11 nm)的较短长度允许Ad9戊烯碱与α(v)整联蛋白的纤维独立结合。纤维长度的差异可能解释了每种病毒的不同结合特征和组织向性,尽管它们都利用了相同的纤维和彭顿碱受体。

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