首页> 外文期刊>Current Genetics: Eukaryotes with Emphasis on Yeasts, Fungi, Mitochondria, Plastids >fhl1 gene of the fission yeast regulates transcription of meiotic genes and nitrogen starvation response, downstream of the TORC1 pathway
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fhl1 gene of the fission yeast regulates transcription of meiotic genes and nitrogen starvation response, downstream of the TORC1 pathway

机译:裂变酵母的FHL1基因调节Torc1路径下游的减数分裂基因和氮饥饿反应的转录

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Environmental changes, such as nutrient limitation or starvation induce different signal transducing pathways, which require coordinated cooperation of several genes. Our previous data revealed that the fhl1 forkhead type transcription factor of the fission yeast could be involved in sporulation, which was typically induced under poor conditions. Since the exact role of Fhl1 in this process was not known, we wanted to identify its downstream targets and to investigate its possible cooperation with another known regulator of sporulation. Gene expression and Northern blot analysis of the fhl1 Delta mutant strain revealed the target genes involved in mating and sporulation. Our results also showed that Fhl1 could regulate nutrient sensing, the transporter and permease genes. Since the majority of these genes belonged to the nitrogen starvation response, the possible cooperation of fhl1 and tor2 was also investigated. Comparison of their microarray data and the expression of fhl1(+) from a strong promoter in the tor2-ts mutant cells suggested that one part of the target genes are commonly regulated by Fhl1 and Tor2. Since the expression of fhl1(+) from a strong promoter could rescue rapamycin and temperature sensitivity and suppressed the hyper-sporulation defect of the tor2-ts mutant cells, we believe that Fhl1 acts in TOR signaling, downstream of Tor2. Thus, this work shed light on certain novel details of the regulation of the sexual processes and a new member of the TOR pathway, but further experiments are needed to confirm the involvement of Fhl1 in nutrient sensing.
机译:环境变化,如营养限制或饥饿,诱导不同的信号转换途径,需要协调几种基因的协调。我们以前的数据显示,裂变酵母的FHL1叉头型转录因子可参与孢子率,其通常在差的条件下诱导。由于FHL1在此过程中的确切作用尚不清楚,我们希望识别其下游目标,并调查与其他已知的孢子调节器的可能合作。 FHL1 Delta突变菌株的基因表达和Northern印迹分析揭示了交配和孢子的靶基因。我们的结果还表明,FHL1可以调节营养感测,转运蛋白和烫发基因。由于这些基因的大部分属于氮饥饿反应,因此还研究了FHL1和TOR2的可能合作。它们的微阵列数据和来自Tor2-Ts突变细胞中的强启动子的FHL1(+)的表达表明,靶基因的一部分通常由FHL1和TOR2调节。由于来自强启动子的FHL1(+)的表达可以拯救雷帕霉素和温度敏感性并抑制TOR2-TS突变细胞的超孢子缺陷,我们认为FHL1在Tor2下游作用于Tor信号传导。因此,这项工作揭示了对性过程调节的某些新细节和TOR途径的新成员,但需要进一步的实验来证实FHL1在营养传感中的参与。

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