Kumar Anuj, Seringhaus Michael, Biery Matthew C, Sarnovsky Robert J, Umansky Lara, Piccirillo Stacy, Heidtman Matthew, Cheung Kei-Hoi, Dobry Craig J, Gerstein Mark B, Craig Nancy L, Snyder Michael
Department of Molecular, Cellular, and Developmental Biology, Yale University, New Haven, Connecticut 06520-8103, USA.
Genome Res. 2004 Oct;14(10A):1975-86. doi: 10.1101/gr.2875304.
We present here an unbiased and extremely versatile insertional library of yeast genomic DNA generated by in vitro mutagenesis with a multipurpose element derived from the bacterial transposon Tn7. This mini-Tn7 element has been engineered such that a single insertion can be used to generate a lacZ fusion, gene disruption, and epitope-tagged gene product. Using this transposon, we generated a plasmid-based library of approximately 300,000 mutant alleles; by high-throughput screening in yeast, we identified and sequenced 9032 insertions affecting 2613 genes (45% of the genome). From analysis of 7176 insertions, we found little bias in Tn7 target-site selection in vitro. In contrast, we also sequenced 10,174 Tn3 insertions and found a markedly stronger preference for an AT-rich 5-base pair target sequence. We further screened 1327 insertion alleles in yeast for hypersensitivity to the chemotherapeutic cisplatin. Fifty-one genes were identified, including four functionally uncharacterized genes and 25 genes involved in DNA repair, replication, transcription, and chromatin structure. In total, the collection reported here constitutes the largest plasmid-based set of sequenced yeast mutant alleles to date and, as such, should be singularly useful for gene and genome-wide functional analysis.
我们在此展示了一个通过体外诱变利用源自细菌转座子Tn7的多功能元件构建的酵母基因组DNA无偏且极其通用的插入文库。这个迷你Tn7元件经过工程改造,使得单次插入可用于产生lacZ融合、基因破坏以及表位标签化的基因产物。利用这个转座子,我们构建了一个基于质粒的约300,000个突变等位基因的文库;通过在酵母中的高通量筛选,我们鉴定并测序了9032个影响2613个基因(占基因组的45%)的插入。通过对7176个插入的分析,我们发现Tn7在体外靶位点选择上几乎没有偏向性。相比之下,我们还对10,174个Tn3插入进行了测序,发现其对富含AT的5碱基对靶序列有明显更强的偏好。我们进一步在酵母中筛选了1327个插入等位基因对化疗药物顺铂的超敏性。鉴定出了51个基因,包括4个功能未表征的基因以及25个参与DNA修复、复制、转录和染色质结构的基因。总体而言,此处报道的文库是迄今为止最大的基于质粒的已测序酵母突变等位基因集合,因此对于基因和全基因组功能分析应该非常有用。