一种可转移的重组工程系统 pYM-Red 的建立
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军队“十五”医药卫生科学基金(01MA089).


The Construction of a New Mobile Recombineering System of pYM-Red
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This work was supported by a grant from Medical Science Foundation of PLA(01MA089).

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    摘要:

    重组工程是近几年发展的新型遗传工程技术. 以 PCR 扩增的线性低拷贝质粒 pACYC184 为载体,用 Gap-repair 方法从大肠杆菌 DY330 染色体上直接体内亚克隆了包括 Red 重组酶基因在内的长约 6.7 kb 的基因序列,构建了 pYM-Red 重组质粒. 在宿主菌 W3110 体内进行了染色体上 galk 基因的敲除,验证了 Red 重组酶的生物功能,并确定了影响 pYM-Red 重组效率的诱导时间和线性 DNA 片段用量. 在 42℃诱导 10 min 和线性 DNA 打靶分子浓度为 300 ng 时, pYM-Red 的重组效率可达到大约每 4 000 个电转存活细胞中有 1 个重组阳性克隆,分别比 pKD46 和 pBR322-Red 系统高 5~6 倍.

    Abstract:

    Recombineering is a new developed genetic engineering technology in the past few years. A new recombineering system named pYM-Red was constructed by gap-repair, that is a technology called in vivo cloning. Linear PCR fragments that amplified from low copy plasmid pACYC184 were used as gene targeting vector. The length of subcloned DNA sequence including Red gene and a series regulatory sequences are about 6.7 kb. The biology function of Red gene in pYM-Red was tested by gene replacement (galk<>kan) of W3110 chromosome. Factors that effect recombination efficiency were precisely confirmed. When induced 10 min at 42 ℃ and using 300 ng linear DNA fragment as targeting molecules, the efficiency of pYM-Red mediated recombination can reach one positive recombination clone per four thousands electroporation survived cells, it is 5~6 folds higher than pBR322-Red and pKD46 recombination system.

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于 梅,周建光,陈 伟,李山虎,黄翠芬.一种可转移的重组工程系统 pYM-Red 的建立[J].生物化学与生物物理进展,2005,32(4):359-364

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