[Objective] To isolate three strains of avian leukosis virus subgroup J(ALV -J) , and then amplify and sequence the gp85 gene. [ Method] Three strains of ALV- J were isolated from Hubei Province, which were identifi...[Objective] To isolate three strains of avian leukosis virus subgroup J(ALV -J) , and then amplify and sequence the gp85 gene. [ Method] Three strains of ALV- J were isolated from Hubei Province, which were identified by pathological anatomy, DF- 1 cell culture and RT- PCR. And then they were named HB1002, HB1003 and HB1009, respectively. [ Result] Test sequence analysis showed, the length of gp85 gene was 921 bp, consistent with expect result; the nucleotide homology between the three isolates was in 97.7% -99.7% ,the homology of amino acid was in 95.1% - 99%. The nucleotide homology between HPRS - 103 and the three isolates was in the 94.1% - 94.8% ; and the nucleotide homolo- gy between other ALV -J and the three isolates was in 87.6% -97.3%. The phylogenetic trees analysis showed that the homology of JS09GY6 vi- rus and the three isolates was nearest, in 95.2% -97.3%. [ Conclusion] In the test, the three strains of virus which were isolated were ALV- J.展开更多
The envelope gene gp85 of ev/J, a new family of endogenous avian retroviral sequences identified recently, has the most extensive nucleotide sequence identity ever described with ALV-J avian leukosis virus. This repor...The envelope gene gp85 of ev/J, a new family of endogenous avian retroviral sequences identified recently, has the most extensive nucleotide sequence identity ever described with ALV-J avian leukosis virus. This report described expression of ev/J envelope gene gp85 derived from commercial meat-type chicken using the Invitrogen Bac-to-Bac baculovirus expression system. The antigenicity and immunoreactivity of the recombinant endogenous gp85 gene product (SU) were analyzed by indirect immunofluorescence, Western blot, indirect and blocking Enzyme-Linked ImmunoSorbent Assay (ELISA) using JE9 monoclonal antibody (MAb) against the envelope protein of ALV-J (ADOL-4817), positive mouse antiserum against the ev/J gp85 SU and sera from chicken naturally infected with ALV-J. The results showed that the ev/J gp85 SU can bind specifically to JE9 MAb and antiserum from chicken naturally infected with ALV-J, and the binding reactivity between exogenous ALV-J gp85 SU and natural positive chicken serum against exogenous ALV-J can be blocked by positive mouse serum against the ev/J gp85 SU. It is concluded that recombinant endogenous gp85 gene product (SU) has close immunological relatedness to the envelope protein of exogenous ALV-J (ADOL-4817 and IMC10200 strain).展开更多
Subgroup J Avian leucosis virus (ALV-J) strain NX0101 was inoculated into chicken embryo fibroblasts (CEF) monolayers in 6-well plates. The six wells of CEF inoculated with NX0101 were divided into groups A (without a...Subgroup J Avian leucosis virus (ALV-J) strain NX0101 was inoculated into chicken embryo fibroblasts (CEF) monolayers in 6-well plates. The six wells of CEF inoculated with NX0101 were divided into groups A (without anti-ALV-J serum in the medium) and B (with anti-ALV-J serum in the medium), then viruses from each well of both groups were separately passed in CEF every 6 d and formed their independent passage lineages. For each lineage of both groups, gp85 genes of the viruses in the 10th, 20th and 30th passages were amplified, cloned and sequenced. The sequence data indicated that the homologies of gp85 at aa level between the primary virus and the passed viruses of different passages of 3 lineages in group A were 97.7%―99.7%; and the homologies of gp85 between the primary virus and the passed viruses of different passages of 3 lineages in group B were 93.8%―96.1%. Analysis of the ratios of nonsynonium (NS) vs synonium (S) mutations of nucleic acids demonstrated that NS/S in 3 highly variable (hr-) regions at aa#110―120, aa#141―151 and aa#189―194 of gp85 in 3 lineages of group A were 2 (8/4), 1(3/3) and 1.3 (4/3), however, NS/S in the same 3 hr-regions of group B were 4.1 (13/3), 4.7 (14/3) and 3.3 (11/3). This study is the first demonstration of influence of immune selective pressure on evolution of ALV-J gp85 by specific antibodies under the controlled in vitro experiments.展开更多
为了解禽白血病病毒(ALV)gp85基因的特点,采用Primer Premier 5.0设计一对特异性引物,对gp85基因进行扩增、克隆及序列测定,用相关生物学软件对贵州流行株gp85基因进行序列分析,并对其编码蛋白进行二级结构、B细胞表位、保守结构域、跨...为了解禽白血病病毒(ALV)gp85基因的特点,采用Primer Premier 5.0设计一对特异性引物,对gp85基因进行扩增、克隆及序列测定,用相关生物学软件对贵州流行株gp85基因进行序列分析,并对其编码蛋白进行二级结构、B细胞表位、保守结构域、跨膜结构域和信号肽预测。测序获得921 bp长的序列,将此流行株命名为ALV-GZ-16。分析发现,流行株ALV-GZ-16的gp85基因核苷酸序列与J亚群中国分离毒株的gp85基因序列同源性为97.5%~99.9%,其编码的氨基酸序列与J亚群中国分离毒株的同源性为96.8%~99.7%;系统进化分析显示,该流行株与J亚群原型毒株处于同一分支,与贵州分离株GZN49处于同一小分支;其二级结构中无规则卷曲和β-折叠所占比例较大;预测此蛋白存在4个B细胞优势抗原表位,无跨膜结构和信号肽区域。研究结果进一步完善了贵州省禽白血病病毒流行株的生物学特性,为gp85蛋白特异性抗体的制备提供一定的理论基础。展开更多
基金Plan of Hubei Province Science and Technology Research and Development Project:the Research and Demonstration of Comprehensive Prevention and Control Technology on Poultry Avian Influenza and other Major Diseases YJN0065the Construction Fund of Modern Agriculture Industry Technology System CARS-42-G11
文摘[Objective] To isolate three strains of avian leukosis virus subgroup J(ALV -J) , and then amplify and sequence the gp85 gene. [ Method] Three strains of ALV- J were isolated from Hubei Province, which were identified by pathological anatomy, DF- 1 cell culture and RT- PCR. And then they were named HB1002, HB1003 and HB1009, respectively. [ Result] Test sequence analysis showed, the length of gp85 gene was 921 bp, consistent with expect result; the nucleotide homology between the three isolates was in 97.7% -99.7% ,the homology of amino acid was in 95.1% - 99%. The nucleotide homology between HPRS - 103 and the three isolates was in the 94.1% - 94.8% ; and the nucleotide homolo- gy between other ALV -J and the three isolates was in 87.6% -97.3%. The phylogenetic trees analysis showed that the homology of JS09GY6 vi- rus and the three isolates was nearest, in 95.2% -97.3%. [ Conclusion] In the test, the three strains of virus which were isolated were ALV- J.
基金Natural Science Foundation of China (30460098)China Postdoctoral Science Foundation funded project (2005038585)
文摘The envelope gene gp85 of ev/J, a new family of endogenous avian retroviral sequences identified recently, has the most extensive nucleotide sequence identity ever described with ALV-J avian leukosis virus. This report described expression of ev/J envelope gene gp85 derived from commercial meat-type chicken using the Invitrogen Bac-to-Bac baculovirus expression system. The antigenicity and immunoreactivity of the recombinant endogenous gp85 gene product (SU) were analyzed by indirect immunofluorescence, Western blot, indirect and blocking Enzyme-Linked ImmunoSorbent Assay (ELISA) using JE9 monoclonal antibody (MAb) against the envelope protein of ALV-J (ADOL-4817), positive mouse antiserum against the ev/J gp85 SU and sera from chicken naturally infected with ALV-J. The results showed that the ev/J gp85 SU can bind specifically to JE9 MAb and antiserum from chicken naturally infected with ALV-J, and the binding reactivity between exogenous ALV-J gp85 SU and natural positive chicken serum against exogenous ALV-J can be blocked by positive mouse serum against the ev/J gp85 SU. It is concluded that recombinant endogenous gp85 gene product (SU) has close immunological relatedness to the envelope protein of exogenous ALV-J (ADOL-4817 and IMC10200 strain).
文摘Subgroup J Avian leucosis virus (ALV-J) strain NX0101 was inoculated into chicken embryo fibroblasts (CEF) monolayers in 6-well plates. The six wells of CEF inoculated with NX0101 were divided into groups A (without anti-ALV-J serum in the medium) and B (with anti-ALV-J serum in the medium), then viruses from each well of both groups were separately passed in CEF every 6 d and formed their independent passage lineages. For each lineage of both groups, gp85 genes of the viruses in the 10th, 20th and 30th passages were amplified, cloned and sequenced. The sequence data indicated that the homologies of gp85 at aa level between the primary virus and the passed viruses of different passages of 3 lineages in group A were 97.7%―99.7%; and the homologies of gp85 between the primary virus and the passed viruses of different passages of 3 lineages in group B were 93.8%―96.1%. Analysis of the ratios of nonsynonium (NS) vs synonium (S) mutations of nucleic acids demonstrated that NS/S in 3 highly variable (hr-) regions at aa#110―120, aa#141―151 and aa#189―194 of gp85 in 3 lineages of group A were 2 (8/4), 1(3/3) and 1.3 (4/3), however, NS/S in the same 3 hr-regions of group B were 4.1 (13/3), 4.7 (14/3) and 3.3 (11/3). This study is the first demonstration of influence of immune selective pressure on evolution of ALV-J gp85 by specific antibodies under the controlled in vitro experiments.
文摘为了解禽白血病病毒(ALV)gp85基因的特点,采用Primer Premier 5.0设计一对特异性引物,对gp85基因进行扩增、克隆及序列测定,用相关生物学软件对贵州流行株gp85基因进行序列分析,并对其编码蛋白进行二级结构、B细胞表位、保守结构域、跨膜结构域和信号肽预测。测序获得921 bp长的序列,将此流行株命名为ALV-GZ-16。分析发现,流行株ALV-GZ-16的gp85基因核苷酸序列与J亚群中国分离毒株的gp85基因序列同源性为97.5%~99.9%,其编码的氨基酸序列与J亚群中国分离毒株的同源性为96.8%~99.7%;系统进化分析显示,该流行株与J亚群原型毒株处于同一分支,与贵州分离株GZN49处于同一小分支;其二级结构中无规则卷曲和β-折叠所占比例较大;预测此蛋白存在4个B细胞优势抗原表位,无跨膜结构和信号肽区域。研究结果进一步完善了贵州省禽白血病病毒流行株的生物学特性,为gp85蛋白特异性抗体的制备提供一定的理论基础。