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TFIIF与TFIIS之间的遗传相互作用。

Genetic interactions between TFIIF and TFIIS.

作者信息

Fish Rachel N, Ammerman Michelle L, Davie Judith K, Lu Betty F, Pham Cindy, Howe LeAnn, Ponticelli Alfred S, Kane Caroline M

机构信息

Department of Molecular and Cell Biology, University of California, Berkeley 94720-3202, USA.

出版信息

Genetics. 2006 Aug;173(4):1871-84. doi: 10.1534/genetics.106.058834. Epub 2006 Apr 30.

Abstract

The eukaryotic transcript elongation factor TFIIS is encoded by a nonessential gene, PPR2, in Saccharomyces cerevisiae. Disruptions of PPR2 are lethal in conjunction with a disruption in the nonessential gene TAF14/TFG3. While investigating which of the Taf14p-containing complexes may be responsible for the synthetic lethality between ppr2Delta and taf14Delta, we discovered genetic interactions between PPR2 and both TFG1 and TFG2 encoding the two larger subunits of the TFIIF complex that also contains Taf14p. Mutant alleles of tfg1 or tfg2 that render cells cold sensitive have improved growth at low temperature in the absence of TFIIS. Remarkably, the amino-terminal 130 amino acids of TFIIS, which are dispensable for the known in vitro and in vivo activities of TFIIS, are required to complement the lethality in taf14Delta ppr2Delta cells. Analyses of deletion and chimeric gene constructs of PPR2 implicate contributions by different regions of this N-terminal domain. No strong common phenotypes were identified for the ppr2Delta and taf14Delta strains, implying that the proteins are not functionally redundant. Instead, the absence of Taf14p in the cell appears to create a dependence on an undefined function of TFIIS mediated by its N-terminal region. This region of TFIIS is also at least in part responsible for the deleterious effect of TFIIS on tfg1 or tfg2 cold-sensitive cells. Together, these results suggest a physiologically relevant functional connection between TFIIS and TFIIF.

摘要

真核生物转录延伸因子TFIIS由酿酒酵母中的一个非必需基因PPR2编码。PPR2的缺失与非必需基因TAF14/TFG3的缺失一起是致死性的。在研究含Taf14p的复合物中哪一个可能是ppr2Delta和taf14Delta之间合成致死性的原因时,我们发现PPR2与TFG1和TFG2之间存在遗传相互作用,TFG1和TFG2编码TFIIF复合物的两个较大亚基,该复合物也包含Taf14p。使细胞对冷敏感的tfg1或tfg2突变等位基因在没有TFIIS的情况下在低温下生长得到改善。值得注意的是,TFIIS的氨基末端130个氨基酸对于TFIIS已知的体外和体内活性是可有可无的,但对于补充taf14Delta ppr2Delta细胞中的致死性却是必需的。对PPR2的缺失和嵌合基因构建体的分析表明该N末端结构域的不同区域有贡献。对于ppr2Delta和taf14Delta菌株,没有鉴定出强烈的共同表型,这意味着这些蛋白质在功能上不是冗余 的。相反,细胞中Taf14p的缺失似乎导致对由其N末端区域介导的TFIIS的未定义功能的依赖。TFIIS的这个区域也至少部分地负责TFIIS对tfg1或tfg2冷敏感细胞的有害作用综合起来,这些结果表明TFIIS和TFIIF之间存在生理相关的功能联系。

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