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Essential Roles of Bdp1, a Subunit of RNA Polymerase III Initiation Factor TFIIIB, in Transcription and tRNA Processing

机译:Bdp1,RNA聚合酶III起始因子TFIIIB的一个亚基,在转录和tRNA加工中的基本作用。

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The essential Saccharomyces cerevisiae gene BDP1 encodes a subunit of RNA polymerase III (Pol III) transcription factor (TFIIIB); TATA box binding protein (TBP) and Brf1 are the other subunits of this three-protein complex. Deletion analysis defined three segments of Bdp1 that are essential for viability. A central segment, comprising amino acids 327 to 353, was found to be dispensable, and cells making Bdp1 that was split within this segment, at amino acid 352, are viable. Suppression of bdp1 conditional viability by overexpressing SPT15 and BRF1 identified functional interactions of specific Bdp1 segments with TBP and Brf1, respectively. A Bdp1 deletion near essential segment I was synthetically lethal with overexpression of PCF1-1, a dominant gain-of-function mutation in the second tetracopeptide repeat motif (out of 11) of the Tfc4 (τ131) subunit of TFIIIC. The analysis also identifies a connection between Bdp1 and posttranscriptional processing of Pol III transcripts. Yeast genomic library screening identified RPR1 as the specific overexpression suppressor of very slow growth at 37°C due to deletion of Bdp1 amino acids 253 to 269. RPR1 RNA, a Pol III transcript, is the RNA subunit of RNase P, which trims pre-tRNA transcript 5′ ends. Maturation of tRNA was found to be aberrant in bdp1-Δ253-269 cells, and RPR1 transcription with the highly resolved Pol III transcription system in vitro was also diminished when recombinant Bdp1Δ253-269 replaced wild-type Bdp1. Physical interaction of RNase P with Bdp1 was demonstrated by coimmunoprecipitation and pull-down assays.
机译:酿酒酵母必不可少的基因 BDP1 编码RNA聚合酶III(Pol III)转录因子(TFIIIB)的一个亚基。 TATA盒结合蛋白(TBP)和Brf1是该三蛋白复合物的其他亚基。缺失分析定义了Bdp1的三个部分,这对于生存力至关重要。发现包含氨基酸327至353的中央区段是可有可无的,并且使在该区段内分裂的Bdp1的细胞在氨基酸352处是可行的。通过过量表达 SPT15 BRF1 来抑制 bdp1 条件生存力,确定了特定Bdp1区段与TBP和Brf1的功能相互作用。 Bemp1基本区段附近的Bdp1缺失在致命的情况下导致过高的 PCF1 - 1 表达,这是第二个四肽重复基序(11个中的一个)的主要功能获得性突变。 TFIIIC的Tfc4(τ 131 )亚基的结构。该分析还确定了Bdp1与Pol III转录本的转录后加工之间的联系。酵母基因组文库筛选确定 RPR1 为特异的抑制因子,由于Bdp1氨基酸253至269缺失,在37°C时非常缓慢的生长。RPR1RNA是Pol III转录本,是RNA的RNA亚基。 RNase P,可修剪tRNA之前的转录本5'末端。发现在 bdp1 -Δ253-269细胞中tRNA的成熟异常,并且当重组Bdp1Δ253-253时,体外高度分离的Pol III转录系统的 RPR1 转录也减少了。 269个替代了野生型Bdp1。 RNase P与Bdp1的物理相互作用通过共免疫沉淀和下拉测定法得到证明。

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