The Rockefeller University, New York, New York, USA.
Nat Protoc. 2010 Sep;5(10):1678-96. doi: 10.1038/nprot.2010.131. Epub 2010 Sep 30.
We report here a high-throughput method for the modification of bacterial artificial chromosomes (BACs) that uses a novel two-plasmid approach. In this protocol, a vector modified in our laboratory to hold an R6Kγ origin of replication and a marker recombination cassette is inserted into a BAC in a single recombination step. Temporal control of recombination is achieved through the use of a second plasmid, pSV1.RecA, which possesses a recombinase gene and a temperature-sensitive origin of replication. This highly efficient protocol has allowed us to successfully modify more than 2,000 BACs, from which over 1,000 BAC transgenic mice have been generated. A complete cycle from BAC choice to embryo implantation takes about 5 weeks. Marker genes introduced into the mice include EGFP and EGFP-L10a. All vectors used in this project can be obtained from us by request, and the EGFP reporter mice are available through the Mutant Mouse Regional Resource Center (NINDS/GENSAT collection). CNS anatomical expression maps of the mice are available to the public at http://www.gensat.org/.
我们在此报告了一种高通量的细菌人工染色体(BAC)修饰方法,该方法使用了一种新颖的双质粒方法。在本方案中,我们实验室对一个载体进行了修饰,使其含有 R6Kγ 复制起点和一个标记重组盒,然后在单个重组步骤中插入 BAC。通过使用第二个质粒 pSV1.RecA 来实现重组的时间控制,该质粒含有一个重组酶基因和一个温度敏感复制起点。这种高效的方案使我们能够成功地修饰了超过 2000 个 BAC,从中产生了超过 1000 个 BAC 转基因小鼠。从 BAC 选择到胚胎植入的完整周期约为 5 周。引入小鼠的标记基因包括 EGFP 和 EGFP-L10a。本项目中使用的所有载体均可应要求提供给我们,而 EGFP 报告小鼠可通过突变小鼠区域资源中心(NINDS/GENSAT 收藏)获得。公众可以在 http://www.gensat.org/ 上获得这些小鼠的中枢神经系统解剖表达图谱。