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减毒活疫苗中逆转录酶活性检测   总被引:3,自引:0,他引:3  
逆转录酶 (RT)是目前发现的所有逆转录病毒的一个重要标志 ,凡是逆转录病毒均携带逆转录酶 ,逆转录酶活性的测定可以反映出制品中是否有逆转录病毒的污染 ,不受病毒基因序列的影响。采用PCR法进行逆转录酶活性检测方法 ,以整个生活周期中无DNA过程的MS2RNA为模板 ,设计一对引物 ,在逆转录系统中加入待检样品 ,经过RT PCR扩增后 ,放大检测对象物进行观察 ,从而了解制品中是否存在逆转录酶的污染 ,继而间接推测其是否污染逆转录病毒。对不同生物制品厂家生产的减毒活疫苗的逆转录酶活性进行检测 ,发现在一些疫苗里有逆转录酶活性阳性。  相似文献   

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Retroviruses use unusual recoding strategies to synthesize the Gag-Pol polyprotein precursor of viral enzymes. In human immunodeficiency virus, ribosomes translating full-length viral RNA can shift back by 1 nucleotide at a specific site defined by the presence of both a slippery sequence and a downstream stimulatory element made of an extensive secondary structure. This so-called frameshift mechanism could become a target for the development of novel antiviral strategies. A different recoding strategy is used by other retroviruses, such as murine leukemia viruses, to synthesize the Gag-Pol precursor; in this case, a stop codon is suppressed in a readthrough process, again due to the presence of a specific structure adopted by the mRNA. Development of antiframeshift agents will greatly benefit from the availability of a simple animal and virus model. For this purpose, the murine leukemia virus readthrough region was rendered inactive by mutagenesis and the frameshift region of human immunodeficiency virus was inserted to generate a chimeric provirus. This substitution of readthrough by frameshift allows the synthesis of viral proteins, and the chimeric provirus sequence was found to generate infectious viruses. This system could be a most interesting alternative to study ribosomal frameshift in the context of a virus amenable to the use of a simple animal model.  相似文献   

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Reverse transcription of 7S L RNA by an avian retrovirus   总被引:9,自引:7,他引:2       下载免费PDF全文
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Biphasic DNA synthesis in spumaviruses   总被引:1,自引:0,他引:1       下载免费PDF全文
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Retrotransposition of Nonviral RNAs in an Avian Packaging Cell Line   总被引:1,自引:0,他引:1       下载免费PDF全文
Retroviruses produced from the quail packaging cell line SE21Q1b predominantly contain cellular RNAs instead of viral RNAs. These RNAs can be reverse transcribed and integrated into the genomes of newly infected cells and are thereafter referred to as newly formed retrogenes. We investigated whether retrogene formation can occur within SE21Q1b cells themselves and whether this occurs intracellularly or via extracellular reinfection. By using packaging cell line mutants derived from the SE21Q1b provirus and selectable reporter constructs, we found that the process requires envelope glycoproteins and a retroviral packaging signal. Our results suggest that extracellular reinfection is the primary route of retrotransposition of nonviral RNAs.  相似文献   

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