Merritt Joshua, DiTonno Jason R, Mitra Robi D, Church George M, Edwards Jeremy S
Department of Chemical Engineering, University of Delaware, Newark, DE 19716, USA.
Nucleic Acids Res. 2003 Aug 1;31(15):e84. doi: 10.1093/nar/gng084.
We describe a strategy to analyze the impact of single nucleotide mutations on protein function. Our method utilizes a combination of yeast functional complementation, growth competition of mutant pools and polyacrylamide gel immobilized PCR. A system was constructed in which the yeast PGK1 gene was expressed from a plasmid-borne copy of the gene in a PGK1 deletion strain of Saccharomyces cerevisiae. Using this system, we demonstrated that the enrichment or depletion of PGK1 point mutants from a mixed culture was consistent with the expected results based on the isolated growth rates of the mutants. Enrichment or depletion of individual point mutants was shown to result from increases or decreases, respectively, in the specific activities of the encoded proteins. Further, we demonstrate the ability to analyze the functional effect of many individual point mutations in parallel. By functional complementation of yeast deletions with human homologs, our technique could be readily applied to the functional analysis of single nucleotide polymorphisms in human genes of medical interest.
我们描述了一种分析单核苷酸突变对蛋白质功能影响的策略。我们的方法结合了酵母功能互补、突变体库的生长竞争和聚丙烯酰胺凝胶固定PCR。构建了一个系统,其中酵母PGK1基因在酿酒酵母的PGK1缺失菌株中由质粒携带的基因拷贝表达。使用该系统,我们证明了从混合培养物中富集或耗尽PGK1点突变体与基于突变体分离生长速率的预期结果一致。单个点突变体的富集或耗尽分别显示是由编码蛋白质的比活性增加或降低导致的。此外,我们展示了并行分析许多单个点突变功能效应的能力。通过用人同源物对酵母缺失进行功能互补,我们的技术可以很容易地应用于医学相关人类基因中单核苷酸多态性的功能分析。