Literature DB >> 15286994

Transposon vectors for gene-trap insertional mutagenesis in vertebrates.

Karl J Clark1, Aron M Geurts, Jason B Bell, Perry B Hackett.   

Abstract

The function of most vertebrate genes remains unknown or uncertain. Insertional mutagenesis offers one approach to identify and understand the function of these genes. Transposons have been used successfully in lower organisms and plants for insertional mutagenesis, but until activation of the Sleeping Beauty (SB) transposon system, there was no indication of active DNA-based transposons in vertebrates. Investigator-driven insertional mutagenesis in vertebrates has relied on retroviral insertions or selection of low-frequency integration of naked DNA in ES cell lines. We have combined the highly active SB transposon with gene-trapping technology to demonstrate that transposon traps can be used for insertional mutagenesis screens in vertebrates. In our studies about one-fourth of the trap insertions appear to be in transcriptional units, a rate that is commensurate with random integration. We show that gene-traps coupled to a fluorescent protein reporter gene can be used to detect insertions into genes active in specific cells of living zebrafish embryos, supporting use of our transposon traps for high-throughput functional genomic screens in vertebrates. 2004 Wiley-Liss, Inc.

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Year:  2004        PMID: 15286994     DOI: 10.1002/gene.20049

Source DB:  PubMed          Journal:  Genesis        ISSN: 1526-954X            Impact factor:   2.487


  26 in total

1.  Endogenous transposases affect differently Sleeping Beauty and Frog Prince transposons in fish cells.

Authors:  Jose Braulio Gallardo-Gálvez; Teresa Méndez; Julia Béjar; M Carmen Alvarez
Journal:  Mar Biotechnol (NY)       Date:  2010-12-01       Impact factor: 3.619

2.  High-resolution genome-wide mapping of transposon integration in mammals.

Authors:  Stephen R Yant; Xiaolin Wu; Yong Huang; Brian Garrison; Shawn M Burgess; Mark A Kay
Journal:  Mol Cell Biol       Date:  2005-03       Impact factor: 4.272

Review 3.  Fishing for answers with transposons.

Authors:  Shannon A Wadman; Karl J Clark; Perry B Hackett
Journal:  Mar Biotechnol (NY)       Date:  2005-05-05       Impact factor: 3.619

4.  Efficient transfection strategy for the spatiotemporal control of gene expression in zebrafish.

Authors:  Hideki Ando; Hitoshi Okamoto
Journal:  Mar Biotechnol (NY)       Date:  2006-04-18       Impact factor: 3.619

5.  Novel strategies for gene trapping and insertional mutagenesis mediated by Sleeping Beauty transposon.

Authors:  Guili Song; Zongbin Cui
Journal:  Mob Genet Elements       Date:  2013-10-02

6.  Exploring new gene integration sites for gene knock-in by gene-trapping strategy.

Authors:  Isamu Nanchi; Yuki Yoshimura; Kazuomi Nakamura; Yusaku Masago; Tetsuya Ohbayashi; Tomohiko Okuda
Journal:  Transgenic Res       Date:  2015-03-31       Impact factor: 2.788

Review 7.  Transposon transgenesis in Xenopus.

Authors:  Donald A Yergeau; Clair M Kelley; Haiqing Zhu; Emin Kuliyev; Paul E Mead
Journal:  Methods       Date:  2010-03-04       Impact factor: 3.608

8.  Gene transfer and mutagenesis mediated by Sleeping Beauty transposon in Nile tilapia (Oreochromis niloticus).

Authors:  Xiaozhen He; Jie Li; Yong Long; Guili Song; Peiyong Zhou; Qiuxiang Liu; Zuoyan Zhu; Zongbin Cui
Journal:  Transgenic Res       Date:  2013-02-19       Impact factor: 2.788

9.  Trapping cardiac recessive mutants via expression-based insertional mutagenesis screening.

Authors:  Yonghe Ding; Weibin Liu; Yun Deng; Beninio Jomok; Jingchun Yang; Wei Huang; Karl J Clark; Tao P Zhong; Xueying Lin; Stephen C Ekker; Xiaolei Xu
Journal:  Circ Res       Date:  2013-01-02       Impact factor: 17.367

10.  Frog Prince transposon-based RNAi vectors mediate efficient gene knockdown in human cells.

Authors:  Christopher D Kaufman; Zsuzsanna Izsvák; Andrea Katzer; Zoltán Ivics
Journal:  J RNAi Gene Silencing       Date:  2005-09-02
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