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禽腺病毒1型长纤维C末端头部结构域的结构

Structure of the C-terminal head domain of the fowl adenovirus type 1 long fiber.

作者信息

Guardado-Calvo Pablo, Llamas-Saiz Antonio L, Fox Gavin C, Langlois Patrick, van Raaij Mark J

机构信息

Departamento de Bioquímica y Biología Molecular, Facultad de Farmacia, Universidad de Santiago de Compostela, Campus Sur, E-15782 Santiago de Compostela, Spain.

Unidad de Rayos X, Laboratorio Integral de Dinámica y Estructura de Biomoléculas José R. Carracido, Edificio CACTUS, Universidad de Santiago de Compostela, Campus Sur, E-15782 Santiago de Compostela, Spain.

出版信息

J Gen Virol. 2007 Sep;88(Pt 9):2407-2416. doi: 10.1099/vir.0.82845-0.

Abstract

Avian adenovirus CELO (chicken embryo lethal orphan virus, fowl adenovirus type 1) incorporates two different homotrimeric fiber proteins extending from the same penton base: a long fiber (designated fiber 1) and a short fiber (designated fiber 2). The short fibers extend straight outwards from the viral vertices, whilst the long fibers emerge at an angle. In contrast to the short fiber, which binds an unknown avian receptor and has been shown to be essential to the invasiveness of this virus, the long fiber appears to be unnecessary for infection in birds. Both fibers contain a short N-terminal virus-binding peptide, a slender shaft domain and a globular C-terminal head domain; the head domain, by analogy with human adenoviruses, is likely to be involved mainly in receptor binding. This study reports the high-resolution crystal structure of the head domain of the long fiber, solved using single isomorphous replacement (using anomalous signal) and refined against data at 1.6 A (0.16 nm) resolution. The C-terminal globular head domain had an anti-parallel beta-sandwich fold formed by two four-stranded beta-sheets with the same overall topology as human adenovirus fiber heads. The presence in the sequence of characteristic repeats N-terminal to the head domain suggests that the shaft domain contains a triple beta-spiral structure. Implications of the structure for the function and stability of the avian adenovirus long fiber protein are discussed; notably, the structure suggests a different mode of binding to the coxsackievirus and adenovirus receptor from that proposed for the human adenovirus fiber heads.

摘要

禽腺病毒CELO(鸡胚致死孤儿病毒,1型禽腺病毒)包含两种不同的同三聚体纤维蛋白,它们从同一个五邻体基部伸出:一种长纤维(称为纤维1)和一种短纤维(称为纤维2)。短纤维从病毒顶点笔直向外延伸,而长纤维以一定角度伸出。与结合未知禽受体且已被证明对该病毒的侵袭至关重要的短纤维不同,长纤维似乎对禽类感染并非必需。两种纤维都包含一个短的N端病毒结合肽、一个细长的杆状结构域和一个球状的C端头部结构域;类似于人腺病毒,头部结构域可能主要参与受体结合。本研究报道了长纤维头部结构域的高分辨率晶体结构,该结构通过单同晶置换(利用反常信号)解析,并以1.6埃(0.16纳米)分辨率的数据进行精修。C端球状头部结构域具有由两个四链β折叠片形成的反平行β三明治折叠,其整体拓扑结构与人腺病毒纤维头部相同。头部结构域N端序列中特征性重复序列的存在表明杆状结构域包含一个三重β螺旋结构。讨论了该结构对禽腺病毒长纤维蛋白功能和稳定性的影响;值得注意的是,该结构提示其与柯萨奇病毒和腺病毒受体的结合模式与人腺病毒纤维头部所提出的模式不同。

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