Liebman S W, Sherman F
Genetics. 1976 Feb;82(2):233-49. doi: 10.1093/genetics/82.2.233.
Strains of the yeast Saccharomyces cerevisiae that contain highly efficient amber (UAG) suppressors grow poorly on nutrient medium, while normal or nearly normal growth rates are observed when these strains lose the supressors or when the suppressors are mutated to lower efficiencies. The different growth rates account for the accumulation of mutants with lowered efficiencies in cultures of strains with highly efficient amber suppressors. Genetic analyses indicate that one of the mutations with a lowered efficiency of suppression is caused by an intragenic mutation of the amber supressor. The inhibition of growth caused by excessive suppression is expected to be exacerbated when appropriate suppressors are combined together in haploid cells if two suppressors act with a greater efficiency than a single suppressor. Such retardation of growth is observed with combinations of two UAA (ochre) suppressors (Gilmore 1967) and with combinations of two UAG suppressors when the efficiencies of each of the suppressors are within a critical range. In contrast, combinations of a UAA suppressor and a UAG suppressor do not affect growth rate. Apparently while either excessive UAA or excessive UAG suppression is deleterious to yeast, a moderate level of simultaneous UAA and UAG suppression is not.
含有高效琥珀色(UAG)抑制基因的酿酒酵母菌株在营养培养基上生长不良,而当这些菌株失去抑制基因或抑制基因突变导致效率降低时,可观察到正常或接近正常的生长速率。不同的生长速率导致了在含有高效琥珀色抑制基因的菌株培养物中出现抑制效率降低的突变体。遗传分析表明,抑制效率降低的突变之一是由琥珀色抑制基因的基因内突变引起的。如果两个抑制基因的作用效率高于单个抑制基因,那么当合适的抑制基因在单倍体细胞中组合在一起时,过度抑制所导致的生长抑制预计会加剧。用两个UAA(赭石色)抑制基因的组合(吉尔摩,1967年)以及当每个抑制基因的效率在临界范围内时用两个UAG抑制基因的组合,都观察到了这种生长迟缓现象。相反,一个UAA抑制基因和一个UAG抑制基因的组合不会影响生长速率。显然,虽然过量的UAA或过量的UAG抑制对酵母有害,但适度水平的同时UAA和UAG抑制则不然。