Yong Han Tek, Yamamoto Natsuko, Takeuchi Rikiya, Hsieh Yi-Ju, Conrad Tom M, Datsenko Kirill A, Nakayashiki Toru, Wanner Barry L, Mori Hirotada
Graduate School of Biological Science, Nara Institute of Science and Technology.
Genes Genet Syst. 2013;88(4):233-40. doi: 10.1266/ggs.88.233.
Genetic interaction networks are especially useful for functional assignment of genes and gaining new insights into the systems-level organization of the cell. While studying interactions of nonessential genes can be relatively straight-forward via use of deletion mutants, different approaches must be used to reveal interactions of essential genes due to their indispensability. One method shown to be useful for revealing interactions of essential genes requires tagging the query protein. However, this approach can be complicated by mutational effects of potential hypomorphic alleles. Here, we describe a pilot study for a new scheme of systematically studying the interactions of essential genes. Our method uses a low-copy, F-based, complementing plasmid, pFE604T, from which the essential gene is conditionally expressed. The essential gene is expressed at lower levels, producing a moderate growth defect in a query host. Secondary mutations are introduced into the query host by conjugation and the resultant exconjugants are scored for growth by imaging them over time. We report results from studying five essential query genes: dnaN, ftsW, trmD, yrfF and yjgP, showing (on average) interactions with nearly 80 nonessential genes. This system should prove useful for genome-wide analyses of other essential genes in E. coli K-12.
基因相互作用网络对于基因的功能分配以及深入了解细胞的系统水平组织特别有用。虽然通过使用缺失突变体来研究非必需基因的相互作用可能相对直接,但由于必需基因的不可或缺性,必须使用不同的方法来揭示它们的相互作用。一种被证明对揭示必需基因相互作用有用的方法需要对查询蛋白进行标记。然而,这种方法可能会因潜在的亚效等位基因的突变效应而变得复杂。在这里,我们描述了一项关于系统研究必需基因相互作用的新方案的初步研究。我们的方法使用一种低拷贝、基于F的互补质粒pFE604T,从该质粒中可条件性表达必需基因。必需基因以较低水平表达,在查询宿主中产生中等程度的生长缺陷。通过接合将二次突变引入查询宿主,并通过对所得接合后体随时间成像来评估其生长情况。我们报告了对五个必需查询基因(dnaN、ftsW、trmD、yrfF和yjgP)的研究结果,显示(平均)与近80个非必需基因存在相互作用。该系统对于大肠杆菌K-12中其他必需基因的全基因组分析应该是有用的。