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计算分析与鉴定一种新出现的人类腺病毒病原体,该病原体与一起呼吸道死亡病例有关。

Computational analysis and identification of an emergent human adenovirus pathogen implicated in a respiratory fatality.

机构信息

Howe Laboratory, Massachusetts Eye and Ear Infirmary, Department of Ophthalmology, Harvard Medical School, 243 Charles Street, Boston, MA 02114, USA.

出版信息

Virology. 2011 Jan 20;409(2):141-7. doi: 10.1016/j.virol.2010.10.020. Epub 2010 Nov 5.

Abstract

Adenoviral infections are typically acute, self-limiting, and not associated with death. However, we present the genomic and bioinformatics analysis of a novel recombinant human adenovirus (HAdV-D56) isolated in France that caused a rare neonatal fatality, and keratoconjunctivitis in three health care workers who cared for the neonate. Whole genome alignments revealed the expected diversity in the penton base, hexon, E3, and fiber coding regions, and provided evidence for extensive recombination. Bootscan analysis confirmed recombination between HAdV-D9, HAdV-D26, HAdV-D15, and HAdV-D29 in the penton base and hexon proteins, centered around hypervariable loops within the putative proteins. Protein structure analysis of the fiber coding region revealed similarity with HAdV-D8, HAdV-D9, and HAdV-D53, possibly accounting for the ocular tropism of the virus. Based on these data, this virus appears to be a new HAdV-D type (HAdV-D56), underscoring the importance of recombination events in human adenovirus evolution and the emergence of new adenovirus pathogens.

摘要

腺病毒感染通常是急性的、自限性的,不会导致死亡。然而,我们报告了一种新型重组人腺病毒(HAdV-D56)的基因组和生物信息学分析,该病毒在法国分离,导致一名罕见的新生儿死亡,并导致三名照顾该新生儿的医护人员发生角膜炎和结膜炎。全基因组比对显示,五邻体基底部、六邻体、E3 和纤维编码区的预期多样性,并提供了广泛重组的证据。Bootscan 分析证实了五邻体基底部和六邻体蛋白中 HAdV-D9、HAdV-D26、HAdV-D15 和 HAdV-D29 之间的重组,重组中心位于假定蛋白的高变环内。纤维编码区的蛋白结构分析显示与 HAdV-D8、HAdV-D9 和 HAdV-D53 相似,可能是病毒具有眼部趋向性的原因。基于这些数据,该病毒似乎是一种新型的 HAdV-D 型(HAdV-D56),突显出人类腺病毒进化和新腺病毒病原体出现过程中重组事件的重要性。

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