Evaluating the biological relevance of putative enhancers using Tol2 transposon-mediated transgenesis in zebrafish

被引:0
作者
Shannon Fisher
Elizabeth A Grice
Ryan M Vinton
Seneca L Bessling
Akihiro Urasaki
Koichi Kawakami
Andrew S McCallion
机构
[1] McKusick–Nathans Institute of Genetic Medicine,Department of Cell Biology
[2] Johns Hopkins University School of Medicine,Division of Molecular and Developmental Biology
[3] Johns Hopkins University School of Medicine,Department of Molecular and Comparative Pathobiology
[4] National Institute of Genetics,undefined
[5] Johns Hopkins University School of Medicine,undefined
来源
Nature Protocols | 2006年 / 1卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Evaluating the biological relevance of the myriad putative regulatory noncoding sequences in vertebrate genomes represents a huge challenge. Functional analyses in vivo have typically relied on costly and labor-intensive transgenic strategies in mice. Transgenesis has also been applied in nonrodent vertebrates, such as zebrafish, but until recently these efforts have been hampered by significant mosaicism and poor rates of germline transmission. We have developed a transgenic strategy in zebrafish based on the Tol2 transposon, a mobile element that was recently identified in another teleost, Medaka. This method takes advantage of the increased efficiency of genome integration that is afforded by this intact DNA transposon, activity that is mediated by the corresponding transposase protein. The approach described in this protocol uses a universal vector system that permits rapid incorporation of DNA that is tagged with sequence targets for site-specific recombination. To evaluate the regulatory potential of a candidate sequence, the desired interval is PCR-amplified using sequence-specific primers that are flanked by the requisite target sites for cloning, and recombined into a universal expression plasmid (pGW_cfosEGFP). Purified recombinant DNAs are then injected into 1–2-cell zebrafish embryos and the resulting reporter expression patterns are analyzed at desired timepoints during development. This system is amenable to large-scale application, facilitating rapid functional analysis of noncoding sequences from both mammalian and teleost species.
引用
收藏
页码:1297 / 1305
页数:8
相关论文
共 45 条
  • [1] Kimura M(1971)Protein polymorphism as a phase of molecular evolution Nature 229 467-469
  • [2] Ota T(2001)Genomic strategies to identify mammalian regulatory sequences Nature Rev. Genet. 2 100-109
  • [3] Pennacchio LA(2002)Initial sequencing and comparative analysis of the mouse genome Nature 420 520-562
  • [4] Rubin EM(2005)Highly conserved noncoding sequences are associated with vertebrate development PLoS Biol 3 e7-202
  • [5] Waterston RH(1996)Transposable element in fish Nature 383 30-510
  • [6] Woolfe A(2003)Efficient gene delivery and gene expression in zebrafish using the Sleeping Beauty transposon Dev. Biol. 263 191-98
  • [7] Koga A(1997)Molecular reconstruction of Sleeping Beauty, a Tc1-like transposon from fish, and its transposition in human cells Cell 91 501-144
  • [8] Suzuki M(2002)I-SceI meganuclease mediates highly efficient transgenesis in fish Mech. Dev. 118 91-237
  • [9] Inagaki H(2004)A transposon-mediated gene trap approach identifies developmentally regulated genes in zebrafish Dev. Cell 7 133-279
  • [10] Bessho Y(2002)A transgenic Lef1/β-catenin-dependent reporter is expressed in spatially restricted domains throughout zebrafish development Dev. Biol. 241 229-359