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利用loxP和lox511 - Tn10转座子将增强子陷阱和iTol2末端序列导向缺失的BAC末端。

Directing enhancer-traps and iTol2 end-sequences to deleted BAC ends with loxP- and lox511-Tn10 transposons.

作者信息

Chatterjee Pradeep K

机构信息

Julius L. Chambers Biomedical/Biotechnology Research Institute, North Carolina Central University, 1801 Fayetteville Street, Durham, NC, 27707, USA,

出版信息

Methods Mol Biol. 2015;1227:99-122. doi: 10.1007/978-1-4939-1652-8_5.

Abstract

A step-by-step detailed procedure is presented to progressively truncate genomic DNA inserts from either end in BACs. The bacterial transposon Tn10 carrying a loxP or a lox511 site is inserted at random into BAC DNA inside the bacterial cell. The cells are then infected with bacteriophage P1. The Cre protein expressed by phage P1 generates end-deletions by specifically recombining the inserted loxP (or lox511) with the loxP (or lox511) endogenous to and flanking insert DNA in BACs from the respective end. The Cre protein also helps phage P1 transduce the BAC DNA by packaging it in P1 heads. This packaging by P1 not only recovers the rare BAC clones containing Tn10 insertions efficiently but also selects end-truncated BACs from those containing inversions of portions of their DNA caused by transposition of Tn10 in the opposite orientation. The libraries of end-deleted BACs generated by this procedure are suitable for numerous mapping studies. Because DNA in front of the loxP (or lox511) arrowheads in the Tn10 transposon is retained at the newly created BAC end, exogenous DNA cassettes such as enhancer-traps and iTol2 ends can be efficiently introduced into BAC ends for germline expression in zebrafish or mice. The methodology should facilitate functional mapping studies of long-range cis-acting gene regulatory sequences in these organisms.

摘要

本文介绍了一种逐步详细的程序,用于在细菌人工染色体(BAC)中从两端逐步截短基因组DNA插入片段。携带loxP或lox511位点的细菌转座子Tn10随机插入细菌细胞内的BAC DNA中。然后用噬菌体P1感染这些细胞。噬菌体P1表达的Cre蛋白通过将插入的loxP(或lox511)与BAC中插入DNA两侧各自末端的内源性loxP(或lox511)特异性重组,产生末端缺失。Cre蛋白还通过将BAC DNA包装到P1头部来帮助噬菌体P1转导BAC DNA。P1的这种包装不仅能高效回收含有Tn10插入的罕见BAC克隆,还能从那些因Tn10反向转座导致其部分DNA发生倒位的BAC中选择末端截短的BAC。通过该程序产生的末端缺失BAC文库适用于众多定位研究。由于Tn10转座子中loxP(或lox511)箭头前方的DNA保留在新产生的BAC末端,增强子捕获和iTol2末端等外源DNA盒可以有效地引入BAC末端,以便在斑马鱼或小鼠中进行种系表达。该方法应有助于对这些生物体中远距离顺式作用基因调控序列进行功能定位研究。

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