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Fission yeast ATF/CREB family protein Atf21 plays important roles in production of normal spores

机译:裂变酵母ATF / CREB家族蛋白Atf21在正常孢子的产生中起重要作用

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Activating transcription factor/cAMP response element binding protein (ATF/CREB) family transcription factors play central roles in maintaining cellular homeostasis. They are activated in response to environmental stimuli, bind to CRE sequences in the promoters of stress-response genes and regulate transcription. Although ATF/CREB proteins are widely conserved among most eukaryotes, their characteristics are highly diverse. Here, we investigated the functions of a fission yeast ATF/CREB protein Atf21 to find out its unique properties. We show that Atf21 is dispensable for the adaptive response to several stresses such as nitrogen starvation and for meiotic events including nuclear divisions. However, spores derived from atf21 Delta mutants are not as mature as wild-type ones and are unable to form colonies under nutrition-rich conditions. Furthermore, we demonstrate that the Atf21 protein, which is scarce in early meiosis, gradually accumulates as meiosis proceeds; it reaches maximum levels approximately 8 h after nitrogen starvation and is present during germination. These results suggest that Atf21 is expressed and functions long after nitrogen starvation. Given that other well-characterized fission yeast ATF/CREB proteins Atf1 and Pcr1 accumulate and function promptly upon exposure to environmental stresses, we propose that Atf21 is a distinct member of the ATF/CREB family in fission yeast.
机译:激活转录因子/ cAMP反应元件结合蛋白(ATF / CREB)家族转录因子在维持细胞稳态中起着重要作用。它们响应环境刺激而被激活,与应激反应基因启动子中的CRE序列结合并调节转录。尽管ATF / CREB蛋白在大多数真核生物中被广泛保存,但是它们的特征却十分多样。在这里,我们调查了裂变酵母ATF / CREB蛋白Atf21的功能,以发现其独特的特性。我们表明,Atf21是必不可少的自适应响应对几种压力,如氮饥饿和减数分裂事件,包括核分裂。但是,源自atf21 Delta突变体的孢子不如野生型成熟,并且在营养丰富的条件下无法形成菌落。此外,我们证明了减数分裂早期稀缺的Atf21蛋白随着减数分裂的进行而逐渐积累。氮饥饿后约8小时达到最高水平,并在发芽过程中存在。这些结果表明,Atf21在氮饥饿后很长一段时间就表达并起作用。鉴于其他特征化的裂变酵母ATF / CREB蛋白Atf1和Pcr1在暴露于环境胁迫下会迅速积累并起作用,我们建议Atf21是裂变酵母中ATF / CREB家族的独特成员。

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