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首页> 外文期刊>Nucleic Acids Research >Negative feedback regulation of calcineurin-dependent Prz1 transcription factor by the CaMKK-CaMK1 axis in fission yeast
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Negative feedback regulation of calcineurin-dependent Prz1 transcription factor by the CaMKK-CaMK1 axis in fission yeast

机译:CAMK-CAMK1轴在裂变酵母中钙蛋白依赖性PRZ1转录因子的负反馈调节

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摘要

Calcium signals trigger the translocation of the Prz1 transcription factor from the cytoplasm to the nucleus. The process is regulated by the calcium-activated phosphatase calcineurin, which activates Prz1 thereby maintaining active transcription during calcium signalling. When calcium signalling ceases, Prz1 is inactivated by phosphorylation and exported to the cytoplasm. In budding yeast and mammalian cells, different kinases have been reported to counter calcineurin activity and regulate nuclear export. Here, we show that the Ca2+/calmodulin-dependent kinase Cmk1 is first phosphorylated and activated by the newly identified kinase CaMKK2 homologue, Ckk2, in response to Ca2+. Then, active Cmk1 binds, phosphorylates and inactivates Prz1 transcription activity whilst at the same time cmk1 expression is enhanced by Prz1 in response to Ca2+. Furthermore, Cdc25 phosphatase is also phosphorylated by Cmk1, inducing cell cycle arrest in response to an increase in Ca2+. Moreover, cmk1 deletion shows a high tolerance to chronic exposure to Ca2+, due to the lack of cell cycle inhibition and elevated Prz1 activity. This work reveals that Cmk1 kinase activated by the newly identified Ckk2 counteracts calcineurin function by negatively regulating Prz1 activity which in turn is involved in activating cmk1 gene transcription. These results are the first insights into Cmk1 and Ckk2 function in Schizosaccharomyces pombe.
机译:钙信号触发PRZ1转录因子的易位从细胞质到核。该方法由钙激活的磷酸酶钙素素调节,其激活PRZ1,从而在钙信号传导期间保持活性转录。当钙信号传导停止时,PRZ1通过磷酸化灭活并出口到细胞质。在萌芽酵母和哺乳动物细胞中,据报道,不同的激酶对抗钙调素活动并调节核出口。这里,我们表明CA2 + /钙调蛋白依赖性激酶CMK1首先通过新鉴定的激酶CAMKK2同源物,CKK2响应于CA2 +而活化。然后,活性CMK1结合,磷酸化物和灭活PRZ1转录活性,同时CMK1表达响应于CA2 +而通过PRZ1增强。此外,CDC25磷酸酶也通过CMK1磷酸化,响应CA2 +的增加,诱导细胞周期停滞。此外,由于缺乏细胞周期抑制和升高的PRZ1活性,CMK1缺失显示出对CA2 +的慢性暴露的高耐受性。该工作揭示了通过新识别的CKK2激活的CMK1激酶通过对钙蛋白函数产生负调节PRZ1活性,这反过来又涉及激活CMK1基因转录。这些结果是Schizosaccharomyces Pombe中CMK1和CKK2功能的首次见解。

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  • 来源
    《Nucleic Acids Research》 |2014年第15期|共15页
  • 作者单位

    Univ Barcelona Fac Med Dept Biol Cellular Immunol &

    Neurociencies Inst Biomed Res August Pi Sunyer IDIBAPS Barcelona 08036 Catalunya Spain;

    Univ Barcelona Fac Med Dept Biol Cellular Immunol &

    Neurociencies Inst Biomed Res August Pi Sunyer IDIBAPS Barcelona 08036 Catalunya Spain;

    Kinki Univ Sch Pharmaceut Sci Lab Mol Pharmacogen Higashiosaka Osaka 5778502 Japan;

    Kinki Univ Sch Pharmaceut Sci Lab Mol Pharmacogen Higashiosaka Osaka 5778502 Japan;

    Univ Barcelona Fac Med Dept Biol Cellular Immunol &

    Neurociencies Inst Biomed Res August Pi Sunyer IDIBAPS Barcelona 08036 Catalunya Spain;

    Univ Barcelona Fac Med Dept Biol Cellular Immunol &

    Neurociencies Inst Biomed Res August Pi Sunyer IDIBAPS Barcelona 08036 Catalunya Spain;

    Univ Barcelona Fac Med Dept Biol Cellular Immunol &

    Neurociencies Inst Biomed Res August Pi Sunyer IDIBAPS Barcelona 08036 Catalunya Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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