Bhargava J, Shashikant C S, Carr J L, Bentley K L, Amemiya C T, Ruddle F H
Genaissance Pharmaceuticals Inc., 5 Science Park, New Haven, Connecticut, 06511, USA.
Genomics. 1999 Mar 15;56(3):337-9. doi: 10.1006/geno.1998.5710.
We have developed a method to capture inserts from P1 and P1 artificial chromosome (PAC) clones into a yeast-bacteria shuttle vector by using recombinogenic targeting. We have engineered a vector, pPAC-ResQ, a derivative of pClasper, which was previously used to capture inserts from yeast artificial chromosome clones. pPAC-ResQ contains DNA fragments flanking the inserts in P1 and PAC vectors as recombinogenic ends. When linearized pPAC-ResQ vector and P1 or PAC DNA are cotransformed into yeast, recombination between the two leads to the transfer of inserts into pPAC-ResQ. pPAC-ResQ clones thus obtained can be further modified in yeast for functional analysis and shuttled to Escherichia coli to produce large quantities of cloned DNA. This approach provides a rapid method to modify P1/PAC clones for functional analysis.
我们已经开发出一种方法,通过重组靶向将P1和P1人工染色体(PAC)克隆中的插入片段捕获到酵母-细菌穿梭载体中。我们构建了一个载体pPAC-ResQ,它是pClasper的衍生物,pClasper先前用于从酵母人工染色体克隆中捕获插入片段。pPAC-ResQ含有P1和PAC载体中插入片段侧翼的DNA片段作为重组末端。当线性化的pPAC-ResQ载体与P1或PAC DNA共转化到酵母中时,两者之间的重组导致插入片段转移到pPAC-ResQ中。由此获得的pPAC-ResQ克隆可以在酵母中进一步修饰以进行功能分析,并穿梭到大肠杆菌中以大量生产克隆DNA。这种方法提供了一种快速修饰P1/PAC克隆以进行功能分析的方法。