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首页> 外文期刊>Virology Journal >Crystal structure of raptor adenovirus 1 fibre head and role of the beta-hairpin in siadenovirus fibre head domains
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Crystal structure of raptor adenovirus 1 fibre head and role of the beta-hairpin in siadenovirus fibre head domains

机译:猛禽腺病毒1纤维头的晶体结构和β-发夹在唾液腺病毒纤维头结构域中的作用

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Background Most adenoviruses recognize their host cells via an interaction of their fibre head domains with a primary receptor. The structural framework of adenovirus fibre heads is conserved between the different adenovirus genera for which crystal structures have been determined ( Mastadenovirus, Aviadenovirus, Atadenovirus and Siadenovirus ), but genus-specific differences have also been observed. The only known siadenovirus fibre head structure, that of turkey adenovirus 3 (TAdV-3), revealed a twisted beta-sandwich resembling the reovirus fibre head architecture more than that of other adenovirus fibre heads, plus a unique beta-hairpin embracing a neighbouring monomer. The TAdV-3 fibre head was shown to bind sialyllactose. Methods Raptor adenovirus 1 (RAdV-1) fibre head was expressed, crystallized and its structure was solved and refined at 1.5?? resolution. The structure could be solved by molecular replacement using the TAdV-3 fibre head structure as a search model, despite them sharing a sequence identity of only 19?%. Versions of both the RAdV-1 and TAdV-3 fibre heads with their beta-hairpin arm deleted were prepared and their stabilities were compared with the non-mutated proteins by a thermal unfolding assay. Results The structure of the RAdV-1 fibre head contains the same twisted ABCJ-GHID beta-sandwich and beta-hairpin arm as the TAdV-3 fibre head. However, while the predicted electro-potential surface charge of the TAdV-3 fibre head is mainly positive, the RAdV-1 fibre head shows positively and negatively charged patches and does not appear to bind sialyllactose. Deletion of the beta-hairpin arm does not affect the structure of the raptor adenovirus 1 fibre head and only affects the stability of the RAdV-1 and TAdV-3 fibre heads slightly. Conclusions The high-resolution structure of RAdV-1 fibre head is the second known structure of a siadenovirus fibre head domain. The structure shows that the siadenovirus fibre head structure is conserved, but differences in the predicted surface charge suggest that RAdV-1 uses a different natural receptor for cell attachment than TAdV-3. Deletion of the beta-hairpin arm shows little impact on the structure and stability of the siadenovirus fibre heads.
机译:背景技术大多数腺病毒通过其纤维头结构域与初级受体的相互作用识别其宿主细胞。腺病毒纤维头的结构框架在已确定晶体结构的不同腺病毒属之间(马氏腺病毒,禽腺病毒,腺病毒和唾液腺病毒)是保守的,但也观察到属特异性差异。唯一已知的唾液腺病毒纤维头部结构,即土耳其腺病毒3(TAdV-3),显示出扭曲的β-三明治结构,类似于呼肠孤病毒纤维头部结构,比其他腺病毒纤维头部结构更重,加上一个独特的β-发夹环抱有相邻单体。显示TAdV-3纤维头与唾液乳糖结合。方法表达,结晶猛禽腺病毒1(RAdV-1)的纤维头,并在1.5 -6处解析和纯化其结构。解析度。该结构可以通过使用TAdV-3纤维头结构作为搜索模型的分子置换来解决,尽管它们共享的序列同一性仅为19%。制备了缺失了β-发夹臂的RAdV-1和TAdV-3纤维头的版本,并通过热解折叠法将其稳定性与未突变的蛋白进行了比较。结果RAdV-1纤维头的结构包含与TAdV-3纤维头相同的扭曲的ABCJ-GHIDβ-三明治和β-发夹臂。但是,虽然TAdV-3纤维头的预测电势表面电荷主要为正电荷,但RAdV-1纤维头显示带正电荷和负电荷的斑块,并且似乎不结合唾液乳糖。 β-发夹臂的缺失不会影响猛禽腺病毒1纤维头的结构,只会稍微影响RAdV-1和TAdV-3纤维头的稳定性。结论RAdV-1纤维头的高分辨率结构是唾液腺病毒纤维头结构域的第二个已知结构。该结构显示唾液腺病毒纤维头部结构是保守的,但是预测的表面电荷的差异表明,RAdV-1与TAdV-3使用不同的天然受体进行细胞附着。 β-发夹臂的缺失显示对唾液腺病毒纤维头的结构和稳定性几乎没有影响。

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