Zuk D, Jacobson A
Department of Molecular Genetics, University of Massachusetts Medical School, Worcester, MA 01655-0122, USA.
EMBO J. 1998 May 15;17(10):2914-25. doi: 10.1093/emboj/17.10.2914.
Most factors known to function in mRNA turnover are not essential for cell viability. To identify essential factors, approximately 4000 temperature-sensitive yeast strains were screened for an increase in the level of the unstable CYH2 pre-mRNA. At the non-permissive temperature, five mutants exhibited decreased decay rates of the CYH2 pre-mRNA and mRNA, and the STE2, URA5 and PAB1 mRNAs. Of these, the mutant ts1159 had the most extensive phenotype. Expression of the TIF51A gene (encoding eIF-5A) complemented the temperature-sensitive growth and mRNA decay phenotypes of ts1159. The tif51A allele was rescued from these cells and shown to encode a serine to proline change within a predicted alpha-helical segment of the protein. ts1159 also exhibited an approximately 30% decrease in protein synthesis at the restrictive temperature. Measurement of amino acid incorporation in wild-type cells incubated with increasing amounts of cycloheximide demonstrated that a decrease in protein synthesis of this magnitude could not account for the full extent of the mRNA decay defects observed in ts1159. Interestingly, the ts1159 cells accumulated uncapped mRNAs at the non-permissive temperature. These results suggest that eIF-5A plays a role in mRNA turnover, perhaps acting downstream of decapping.
已知在mRNA周转过程中起作用的大多数因子对于细胞生存力并非必不可少。为了鉴定必需因子,对大约4000株温度敏感型酵母菌株进行了筛选,以寻找不稳定的CYH2前体mRNA水平升高的菌株。在非允许温度下,五个突变体表现出CYH2前体mRNA和mRNA以及STE2、URA5和PAB1 mRNA的降解速率降低。其中,突变体ts1159具有最广泛的表型。TIF51A基因(编码eIF-5A)的表达互补了ts1159的温度敏感型生长和mRNA降解表型。从这些细胞中拯救出tif51A等位基因,并显示其编码的蛋白质在预测的α螺旋区段内由丝氨酸变为脯氨酸。ts1159在限制温度下蛋白质合成也降低了约30%。对用增加量的环己酰亚胺孵育的野生型细胞中的氨基酸掺入进行测量表明,这种程度的蛋白质合成降低不能解释在ts1159中观察到的mRNA降解缺陷的全部程度。有趣的是,ts1159细胞在非允许温度下积累了无帽mRNA。这些结果表明,eIF-5A在mRNA周转中起作用,可能在脱帽下游发挥作用。