Tfs1, transcription elongation factor TFIIS, has an impact on chromosome segregation affected by pka1 deletion in Schizosaccharomyces pombe.

IF 1.8 4区 生物学 Q3 GENETICS & HEREDITY
Kouhei Takenaka, Shiho Nishioka, Yuki Nishida, Makoto Kawamukai, Yasuhiro Matsuo
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引用次数: 0

Abstract

The cAMP-dependent protein kinase (PKA) pathway in Schizosaccharomyces pombe plays an important role in microtubule organization and chromosome segregation. Typically, loss of functional Pka1 induces sensitivity to the microtubule-destabilizing drug thiabendazole (TBZ) and chromosome mis-segregation. To determine the mechanism via which Pka1 is involved in these events, we explored the relevance of transcription factors by creating a double-deletion strain of pka1 and 102 individual genes encoding transcription factors. We found that rst2∆, tfs1∆, mca1∆, and moc3∆ suppressed the TBZ-sensitive phenotype of the pka1∆ strain, among which tfs1∆ was the strongest suppressor. All single mutants (rst2∆, tfs1∆, mca1∆, and moc3∆) showed a TBZ-tolerant phenotype. Tfs1 has two transcriptional domains (TFIIS and Zn finger domains), both of which contributed to the suppression of the pka1∆-induced TBZ-sensitive phenotype. pka1∆-induced chromosome mis-segregation was rescued by tfs1∆ in the presence of TBZ. tfs1 overexpression induced the TBZ-sensitive phenotype and a high frequency of chromosome mis-segregation, suggesting that the amount of Tfs1 must be strictly controlled. However, Tfs1-expression levels did not differ between the wild-type and pka1∆ strains, and the Tfs1-GFP protein was localized to the nucleus and cytoplasm in both strains, which excludes the direct regulation of expression and localization of Tfs1 by Pka1. Growth inhibition by TBZ in pka1∆ strains was notably rescued by double deletion of rst2 and tfs1 rather than single deletion of rst2 or tfs1, indicating that Rst2 and Tfs1 contribute independently to counteract TBZ toxicity. Our findings highlight Tfs1 as a key transcription factor for proper chromosome segregation.

Abstract Image

转录延伸因子TFIIS对裂糖酵母pka1缺失对染色体分离的影响。
裂糖酵母camp依赖性蛋白激酶(PKA)通路在微管组织和染色体分离中起重要作用。通常,功能性Pka1的缺失会导致对微管不稳定药物噻苯达唑(thiabendazole, TBZ)的敏感性和染色体错误分离。为了确定Pka1参与这些事件的机制,我们通过创建Pka1的双缺失菌株和102个编码转录因子的个体基因来探索转录因子的相关性。我们发现rst2∆、tfs1∆、mca1∆和moc3∆抑制了pka1∆菌株的tbz敏感表型,其中tfs1∆的抑制作用最强。所有单突变体(rst2∆、tfs1∆、mca1∆和moc3∆)均表现出耐tbz表型。Tfs1有两个转录结构域(TFIIS和Zn指结构域),这两个转录结构域都有助于抑制pka1∆诱导的tbz敏感表型。在TBZ存在的情况下,tfs1∆可挽救pka1∆诱导的染色体错误分离。tfs1过表达诱导了tbz敏感表型和高频率的染色体错分离,提示必须严格控制tfs1的数量。但野生型菌株与pka1∆菌株的Tfs1表达量无差异,且两株菌株的Tfs1- gfp蛋白均定位于细胞核和细胞质中,排除了pka1直接调控Tfs1表达和定位的可能。ttbz对pka1∆菌株生长的抑制作用通过rst2和tfs1的双缺失而非rst2或tfs1的单缺失得以明显恢复,说明rst2和tfs1对ttbz毒性的抑制作用是独立的。我们的研究结果强调Tfs1是染色体正确分离的关键转录因子。
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来源期刊
Current Genetics
Current Genetics 生物-遗传学
CiteScore
6.00
自引率
0.00%
发文量
34
审稿时长
1 months
期刊介绍: Current Genetics publishes genetic, genomic, molecular and systems-level analysis of eukaryotic and prokaryotic microorganisms and cell organelles. All articles are peer-reviewed. The journal welcomes submissions employing any type of research approach, be it analytical (aiming at a better understanding), applied (aiming at practical applications), synthetic or theoretical. Current Genetics no longer accepts manuscripts describing the genome sequence of mitochondria/chloroplast of a small number of species. Manuscripts covering sequence comparisons and analyses that include a large number of species will still be considered.
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