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首页> 外文期刊>Current Microbiology: An International Journal >Fission Yeast srm1 is Involved in Stress Response and Cell Cycle
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Fission Yeast srm1 is Involved in Stress Response and Cell Cycle

机译:裂变酵母SRM1参与应力响应和细胞周期

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摘要

Polyamines are well-conserved, multifunctional polycations that contribute to a number of processes in the cells such as cell cycle, apoptosis, stress response, and gene expression. Therefore, polyamine levels should be kept under strict regulation by specific polyamine transporters and polyamine synthases. In this study, the aim is to experimentally characterize a predicted spermidine synthase gene srm1, which was identified upon sequence similarity, in fission yeast Schizosaccharomyces pombe. In an attempt to understand the role of this gene in cell cycle and stress response, deletion mutant of srm1 was generated and analyzed in terms of cell cycle regulation and environmental stress response. The results showed that srm1 Delta cells had elongated cell size and were sensitive to osmotic stress, while they showed no sensitivity to DNA-damaging agents. To the best of our knowledge, this is the first experimental characterization of srm1 gene and its role in cell cycle progression and stress response.
机译:多胺是保守的多功能聚合物,其有助于细胞中的许多过程,例如细胞周期,细胞凋亡,应力反应和基因表达。因此,通过特定的多胺转运蛋白和多胺合成酶严格调节,将多胺水平保持。在该研究中,目的是通过实验表征预测的亚精氨酸合酶基因SRM1,其在裂变酵母Schizosaccharomyces Pombe中鉴定了序列相似性。在试图理解该基因在细胞周期和应力响应中的作用,在细胞周期调节和环境应激反应方面产生并分析SRM1的缺失突变体。结果表明,SRM1δ细胞具有细长的细胞尺寸,并且对渗透胁迫敏感,而它们对DNA损伤剂显示不敏感。据我们所知,这是SRM1基因的第一次实验表征及其在细胞周期进展和应激反应中的作用。

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