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酵母TFIIIC最大亚基中的突变影响tRNA和5S RNA合成。两类抑制子的鉴定。

A mutation in the largest subunit of yeast TFIIIC affects tRNA and 5 S RNA synthesis. Identification of two classes of suppressors.

作者信息

Lefebvre O, Rüth J, Sentenac A

机构信息

Service de Biochimie et de Génétique Moléculaire, CEA-Centre d'Etudes de Saclay, Gif-sur-Yvette, France.

出版信息

J Biol Chem. 1994 Sep 16;269(37):23374-81.

PMID:8083243
Abstract

We report the characterization of a mutation affecting tau 138, the largest subunit of yeast transcription factor IIIC (TFIIIC). A previously described thermosensitive mutation (tsv115), tightly linked to the centromere of chromosome I (Harris, S.D., and Pringle, J.R. (1991) Genetics 127, 279-285) is shown to lie in the TFC3 gene which encodes tau 138. The tau 138 subunit carrying this mutation bears a single substitution of Glu for Gly at position 349 (G349E). In extracts from mutant cells, both the level of TFIIIC and its affinity for tDNA were found to be reduced. The tDNA binding activity of mutant TFIIIC protein was very sensitive to mild heat treatments, and TFIIIC-DNA interaction was inhibited at moderate salt concentrations, as evidenced by gel shift assays. In addition, the tsv115 mutation affected 5 S RNA synthesis in vitro, suggesting that the tau 138 subunit also plays a role in recognition of the TFIIIA-5 S DNA complex. Multicopy suppressors of the TFIIIC defect were sought to reveal components participating in TFIIIC function. One class of suppressors encodes known components of the transcription machinery: two TFIIIC subunits, tau 95 and tau 131, the 70-kDa subunit of TFIIIB, TBP, and a shared subunit of RNA polymerase (pol) I, II, and III, ABC10 alpha; it also includes genes potentially related to pol III function, such as SRP40 which also suppresses a mutation in a subunit shared by RNA polymerases I and III. A second class of suppressors is not involved in transcription but alleviates the main physiological defects of mutant cells. It includes RPR1 and NOP1, required for the maturation of pre-tRNA and pre-rRNA, respectively.

摘要

我们报道了一个影响酵母转录因子IIIC(TFIIIC)最大亚基tau 138的突变特征。先前描述的与I号染色体着丝粒紧密连锁的温度敏感突变(tsv115)(哈里斯,S.D.,和普林格尔,J.R.(1991年)《遗传学》127卷,279 - 285页)被证明位于编码tau 138的TFC3基因中。携带此突变的tau 138亚基在第349位发生了单个氨基酸替换,即甘氨酸被谷氨酸取代(G349E)。在突变细胞提取物中,发现TFIIIC的水平及其与tDNA的亲和力均降低。突变型TFIIIC蛋白的tDNA结合活性对温和热处理非常敏感,并且在中等盐浓度下TFIIIC - DNA相互作用受到抑制,凝胶迁移实验证明了这一点。此外,tsv115突变影响了体外5 S RNA的合成,这表明tau 138亚基在识别TFIIIA - 5 S DNA复合物中也发挥作用。为了揭示参与TFIIIC功能的成分,我们寻找了TFIIIC缺陷的多拷贝抑制子。一类抑制子编码转录机制的已知成分:两个TFIIIC亚基,tau 95和tau 131,TFIIIB的70 kDa亚基TBP,以及RNA聚合酶(pol)I、II和III的一个共享亚基ABC10α;它还包括可能与pol III功能相关的基因,如SRP40,它也能抑制RNA聚合酶I和III共享亚基中的一个突变。另一类抑制子不参与转录,但能减轻突变细胞的主要生理缺陷。它包括分别参与前体tRNA和前体rRNA成熟所需的RPR1和NOP1。

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