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首页> 外文期刊>Journal of Virology >Integration site of polyoma virus DNA in the inducible LPT line of polyoma-transformed rat cells.
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Integration site of polyoma virus DNA in the inducible LPT line of polyoma-transformed rat cells.

机译:聚瘤病毒DNA的集成位点在诱导型大鼠转化大鼠细胞中的诱导型LPT系列中。

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摘要

The structure of the polyoma virus (Py) integration site in the inducible LPT line of Py-transformed rat cells was determined by biochemical methods of gene mapping. LPT cell DNA was digested with various restriction enzymes. The digestion products were electrophoresed in agarose gels and transferred onto nitrocellulose sheets by Southern blotting. Fragments containing viral or cell DNA sequences, or both, were identified by hybridization with Py DNA or with a cloned flanking cell DNA probe. Cleavage of LPT DNA with enzymes that restrict the Py genome once generated linear Py DNA molecules and two fragments containing both cell and viral DNA sequences. Cleavage of LPT DNA with enzymes which do not restrict Py DNA generated series of fragments whose lengths were found to differ by increments of a whole Py genome; the smallest fragment in each series was found to be longer than the viral genome. These data indicate that LPT cultures contain Py insertions of various lengths integrated into the same chromosomal site in all the cells. The length heterogeneity of the viral insertions is due to the presence of 0, 1, 2, 3. . . Py genomes arranged in a direct tandem repeat within invariable sequences of viral DNA. Double-digestion experiments were also carried out with the above enzymes and with enzymes that cleave the Py genome at multiple sites. The data obtained in these experiments were used to construct a physical map of the integration site. This map showed that the early region of the virus remained intact even in the smallest insertion (which contains no whole duplicated genomes), whereas the late region was partially duplicated and split during integration. The smallest insertion is colinear with the Py physical map over a region including the entire Py genome and at least a part of the duplicated segment. This structure could give rise to nondefective circular viral DNA molecules by single homologous recombination events. Similar recombination events may occur at a higher frequency in the longer insertions, which include longer regions of homology, and may yield many more free viral genomes. The presence of these insertions in LPT cells could thus be one of the factors which account for the high inducibility of the LPT line.
机译:通过基因映射的生物化学方法测定诱导型大鼠细胞的诱导型LPT系中的聚瘤病毒(PY)集成位点的结构。用各种限制酶消化LPT细胞DNA。消化产物在琼脂糖凝胶中电泳,并通过Southern印迹转移到硝酸纤维素片上。含有病毒或细胞DNA序列或两者的片段通过与PY DNA或克隆侧翼细胞DNA探针杂交来鉴定。用酶裂解LPT DNA,所述酶限制Py基因组一旦产生的线性py DNA分子和含有细胞和病毒DNA序列的两个片段。 LPT DNA用酶切割,所述酶不会限制Py DNA产生的一系列碎片,其长度被整个Py Genome的增量不同;发现每个系列中最小的片段比病毒基因组长。这些数据表明LPT培养物在所有细胞中含有各种长度的族分配。病毒插入的长度异质性是由于0,1,2,3的存在。 。在病毒DNA的不变序列中,在直接串联重复中排列的PY基因组。还使用上述酶和酶进行双消化实验,并在多个位点切割py基因组。在这些实验中获得的数据用于构建积分部位的物理图谱。该地图表明,即使在最小的插入中(其不含全部重复的基因组),病毒的早期区域也保持完整,而后期区域在整合期间部分重复并分裂。最小的插入是CLINEAR,PY物理图在包括整个PY基因组和至少一部分的重复段的区域上。这种结构可以通过单一同源重组事件产生非缺陷的圆形病毒DNA分子。类似的重组事件可能在较长的插入中以较高的频率发生,其包括更长的同源区域,并且可以产生更多的游离病毒基因组。因此,LPT细胞中的这些插入的存在因此可以是用于LPT线的高诱导性的因素之一。

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