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中文摘要
翻译
副粘病毒科是包膜,负链RNA病毒,包括麻疹病毒,人
英文摘要
The Paramyxoviridae are enveloped, negative-stranded RNA viruses, including measles virus, human parainfluenza virus (hPIV) types 1-4, respiratory syncytial virus, mumps virus, Newcastle disease virus (NDV), Sendai virus, simian parainfluenza virus 5, and the newly-emerged hendra and nipah viruses. Measles remains a major killer of children worldwide, despite successful vaccination programs in industrialized countries and .along with mumps and nipah viruses, causes severe CMSdisease. HPIV types 1-3 have long been recognized as causative agents of croup and as important respiratory pathogens, especially of infants and children and hPIVS is a major cause of pneumonia and bronchitis. Recently, NDV has gained importance for its ability to selectively kill tumor cells and has potential for use as both an oncolytic agent and a vaccine vector for expression of foreign genes from other viruses, including influenza virus. The long-term objective of this project is the characterization of the structure/function of the paramyxovirus glycoproteins and their early interactions with the target cell. One of the hallmark cytopathic effects of cells infected with paramyxoviruses is the formation of multi-nucleate syncytia. This process is mediated by membrane fusion induced by a virus-specific interaction between the two viral surface glycoproteins, the attachment (HN/H) and the fusion (F) proteins. The objective of this proposal is to understand the mechanism by which the virus-specific interaction between paramyxovirus glycoproteins regulates the activation of the fusion protein at the proper time and place. A clear understanding of this process will guide anti-viral strategies, such as small molecule inhibitors, aimed at controlling these viruses through interference with the early steps in infection. The specific aims of this proposal are to elucidate the molecular basis for the correlation between the strength of the HN-receptor interaction and the level of membrane fusion, to follow the status of the glycoprotein complex through the fusion process, to test various models proposed for the mechanism of HN-F mediated fusion and, to demonstrate the complementarity of the interacting domains on the NDV HN and F proteins.
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Individual N-glycans added at intervals along the stalk of the Nipah virus G protein prevent fusion but do not block the interaction with the homologous F protein.
沿着尼帕病毒 G 蛋白的茎部间隔添加的单个 N-聚糖可防止融合,但不会阻止与同源 F 蛋白的相互作用。
DOI: 10.1128/jvi.03084-12
发表时间: 2013
期刊: Journal of virology
影响因子: 5.4
作者: [Zhu,Qiyun, Biering,ScottB, Mirza,AnneM, Grasseschi,BrittanyA, Mahon,PaulJ, Lee,Benhur, Aguilar,HectorC, Iorio,RonaldM]
通讯作者: Iorio,RonaldM
DOI: 10.1016/j.virusres.2009.10.020
发表时间: 2010-01
期刊: VIRUS RESEARCH
影响因子: 5
作者: [Alamares, Judith G., Elankumaran, Subbiah, Samal, Siba K., Iorio, Ronald M.]
通讯作者: Iorio, Ronald M.
An oligosaccharide at the C-terminus of the F-specific domain in the stalk of the human parainfluenza virus 3 hemagglutinin-neuraminidase modulates fusion.
人副流感病毒 3 型血凝素神经氨酸酶柄中 F 特异性结构域 C 端的寡糖可调节融合。
DOI: 10.1016/j.virusres.2003.11.010
发表时间: 2004
期刊: Virus research
影响因子: 5
作者: [Wang,Zhiyu, Mirza,AnneM, Li,Jianrong, Mahon,PaulJ, Iorio,RonaldM]
通讯作者: Iorio,RonaldM
Triggering of the newcastle disease virus fusion protein by a chimeric attachment protein that binds to Nipah virus receptors.
通过与尼帕病毒受体结合的嵌合附着蛋白触发新城疫病毒融合蛋白。
DOI: 10.1074/jbc.m111.233965
发表时间: 2011
期刊: The Journal of biological chemistry
影响因子: --
作者: [Mirza,AnneM, Aguilar,HectorC, Zhu,Qiyun, Mahon,PaulJ, Rota,PaulA, Lee,Benhur, Iorio,RonaldM]
通讯作者: Iorio,RonaldM
Glycoprotein interactions in paramyxovirus fusion
Glycoprotein interactions in paramyxovirus fusion
Glycoprotein interactions in paramyxovirus fusion
Glycoprotein interactions in paramyxovirus fusion
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