Murphy C K, Stewart E J, Beckwith J
Department of Microbiology and Molecular Genetics, Harvard Medical School, Boston, MA 02115, USA.
Gene. 1995 Mar 21;155(1):1-7. doi: 10.1016/0378-1119(94)00920-n.
The ability to analyze null alleles of genes can be an important means of studying both a protein's function and its interactions with other proteins involved in a particular process. However, if the gene encodes a protein that is essential to the viability of the cell, such analysis becomes complicated because a complementing copy of the gene must be present in the cell. In order to study the effects caused by the null allele, the complementing copy must be inactivated or lost. We report the development of a system in Escherichia coli which facilitates the manipulation of null alleles of essential genes. It consists of a strain deleted chromosomally for the essential gene and complemented for its function by a wild-type (wt) copy expressed from a plasmid counter-selectable for two markers bracketing the gene. Using this system, we have (i) searched for bypass suppressors of a deletion of the essential secE gene, (ii) ascertained the ability of various mutant secE genes to complement a deletion of the wt copy and (iii) isolated intragenic pseudorevertants of a null missense allele of secE. This methodology should be widely applicable to other cases in which essential genes are to be studied genetically.
分析基因无效等位基因的能力可能是研究蛋白质功能及其与参与特定过程的其他蛋白质相互作用的重要手段。然而,如果该基因编码一种对细胞生存能力至关重要的蛋白质,那么这种分析就会变得复杂,因为细胞中必须存在该基因的互补拷贝。为了研究无效等位基因所造成的影响,必须使互补拷贝失活或丢失。我们报告了一种在大肠杆菌中开发的系统,该系统有助于对必需基因的无效等位基因进行操作。它由一个染色体上缺失必需基因且由从位于该基因两侧的两个标记的反向选择质粒表达的野生型(wt)拷贝来补充其功能的菌株组成。利用这个系统,我们(i)寻找必需的secE基因缺失的旁路抑制子,(ii)确定各种突变的secE基因互补野生型拷贝缺失的能力,以及(iii)分离secE无效错义等位基因的基因内假回复突变体。这种方法应该广泛适用于其他需要对必需基因进行遗传学研究的情况。