1.Cloning and expression of gp85 gene of subgroup J avian leukosis virus isolated from hemangiomas.
Bo QIU ; Gong-zhen LIU ; Xiao-wei WANG ; Feng WANG ; Hong-boi CHEN ; Zi-qiang CHENG
Chinese Journal of Virology 2011;27(2):151-157
During July to November in 2007, several outbreaks of Hemangiomas in Hy-line Brown laying hens were observed in China. The virus that infected these flocks was identified in cultured DF-1 cells by PCR and indirect fluorescent assay (IFA) with ALV-J specific monoclonal antibody JE-9. The gp85 gene of one strain named WS0705 of ALV-J was cloned and expressed. Phylogenetic analysis showed that gp85 amino sequences of WS0705 strain had the highest homology with that of the prototype HPRS-103. The gp85 gene from a constructed plasmid pMD18-T-WS0705gp85 was cloned into baculovirus transfer vector. rBac-WS0705gp85 was obtained by the Bac-to-Bac baculovirus expression system. The rBac-WS0705gp85 protein was analyzed by indirect immunofluor escence assay and Western blot. The results showed that positive green fluorescent was present in Sf9 cells infected with the recombinant virus and a 35 kD band was present in western blot. It is concluded that WS0705 gp85 gene was expressed in Sf9 cells infected with the recombinant virus and the SU protein of WS0705 can bind specifically to JE9 MAb of ALV-J. The expressed protein can be used to detect hemangiomas induced by ALV-J.
Amino Acid Sequence
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Animals
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Avian Leukosis Virus
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classification
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genetics
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Blotting, Western
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Cell Line
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Cloning, Molecular
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Electrophoresis, Polyacrylamide Gel
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Gene Expression
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Hemangioma
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virology
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Phylogeny
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Polymerase Chain Reaction
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Sequence Alignment
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Viral Envelope Proteins
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chemistry
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genetics
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isolation & purification
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metabolism
2.Molecular mechanism of ORFV intervention strategies based on the UPS of host cell: a review.
Yong-Zhong YU ; Chun-Yu TONG ; Bai-Fen SONG ; Hong-Boi AN ; Li-Yun YU ; Li YU ; Yu-Dong CUI
Chinese Journal of Virology 2013;29(6):662-666
In order to compete the antiviral effects of the host cell in the process of infection, ORFV(known as Orf virus) relies on a series of functional genes developed through long-term population evolution, such as interferon resistance genes, Bcl-2 protein genes and cell cycle inhibitor gene and so on, with these weapons this virus is able to effectively counteract immune clearance and immune regulation from a host cell. Concurrently, ORFV also focuses on exploiting signal transduction pathways of the ubiquitin-proteasome system(UPS), circumvents the intracellular signal transduction and CD8+ T activation, for shielding virus particles towards maturation and releasing outside. This review introduced inner link between the UPS of host cell and intervention mechanism by virus, and analyzed the key roles of certains components in UPS, these all together showed the evolution tendency of ORFV that was involved in the designing of inhibition to immune response and for intracellular immune escape upon the selection pressure in host cell infected.
Animals
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Ecthyma, Contagious
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enzymology
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virology
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Host-Pathogen Interactions
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Humans
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Orf virus
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genetics
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physiology
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Proteasome Endopeptidase Complex
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metabolism
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Ubiquitin
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metabolism