首页> 美国卫生研究院文献>Journal of Virology >Structure and Functions of the Kirsten Murine Sarcoma Virus Genome: Molecular Cloning of Biologically Active Kirsten Murine Sarcoma Virus DNA
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Structure and Functions of the Kirsten Murine Sarcoma Virus Genome: Molecular Cloning of Biologically Active Kirsten Murine Sarcoma Virus DNA

机译:Kirsten鼠肉瘤病毒基因组的结构和功能:生物活性的Kirsten鼠肉瘤病毒DNA的分子克隆

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摘要

The unintegrated closed circular form of viral DNA prepared from NIH3T3 cells infected with Kirsten murine sarcoma virus was cloned into bacterial plasmid pBR322. The closed circular DNA, which consisted of two different-sized populations, was enriched from the virus-infected cells, linearized with BamHI, and inserted into pBR322 DNA. Four different recombinant DNAs (clones 2, 4, 6, and 7) were obtained, and a physical map of each was constructed by using various restriction enzymes. Clone 4 DNA had the largest insertion, corresponding to a complete copy of the linear DNA. This suggested that this insertion contained two copies of the 0.55-kilobase pair long terminal redundant sequence. Clone 2 and clone 6 insertion DNAs had deletions of 0.2 and 0.5 kilobase pair, respectively, which mapped near the right end (3′ side of viral RNA) of the linear DNA. Clone 7 DNA appeared to have a deletion of a single copy of the large terminal redundant sequence. Transfection of BALB3T3 cells with the clone 4 DNA insertion showed that this DNA had transforming activity. The efficiency of transfection with clone 4 Kirsten murine sarcoma virus DNA was enhanced eightfold by inserting EcoRI-cleaved viral DNA into the EcoRI site of pBR322. The EcoRI-inserted DNA produced foci with single-hit kinetics, suggesting that a single molecule of Kirsten murine sarcoma virus DNA can induce transformation. Results of transfections with EcoRI-inserted Kirsten murine sarcoma virus DNA cleaved with various restriction enzymes suggested that the first 3.3-kilobase pair region at the left end of the linear DNA is important for the initiation of transformation or maintenance of transformation or both.
机译:从感染柯氏鼠肉瘤病毒的NIH3T3细胞制备的病毒DNA的未整合的封闭环状形式被克隆到细菌质粒pBR322中。从感染了病毒的细胞中富集了由两个不同大小的种群组成的闭合环状DNA,并用BamHI线性化,然后将其插入pBR322 DNA中。获得了四个不同的重组DNA(克隆2、4、6和7),并通过使用各种限制酶构建了每个的物理图谱。克隆4 DNA具有最大插入,对应于线性DNA的完整副本。这表明该插入包含0.55碱基对长末端冗余序列的两个副本。克隆2和克隆6插入DNA分别具有0.2和0.5碱基对的缺失,它们位于线性DNA的右端(病毒RNA的3'侧)附近。克隆7 DNA似乎缺失了大末端冗余序列的单个拷贝。用克隆4 DNA插入物转染BALB3T3细胞表明该DNA具有转化活性。通过将EcoRI切割的病毒DNA插入pBR322的EcoRI位点,克隆4 Kirsten鼠肉瘤病毒DNA的转染效率提高了八倍。插入EcoRI的DNA产生具有单次击中动力学的灶,表明Kirsten鼠肉瘤病毒DNA的单个分子可以诱导转化。用EcoRI插入的Kirsten鼠肉瘤病毒DNA的各种限制酶切割后的转染结果表明,线性DNA左端的第一个3.3碱基对区域对于启动转化或维持转化或两者都很重要。

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