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首页> 外文期刊>Oxidative Medicine and Cellular Longevity >The Cell Wall Sensors Mtl1, Wsc1, and Mid2 Are Required for Stress-Induced Nuclear to Cytoplasmic Translocation of Cyclin C and Programmed Cell Death in Yeast
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The Cell Wall Sensors Mtl1, Wsc1, and Mid2 Are Required for Stress-Induced Nuclear to Cytoplasmic Translocation of Cyclin C and Programmed Cell Death in Yeast

机译:细胞壁传感器Mtl1,Wsc1和Mid2是应激诱导的Cyclin C核转胞质转移和酵母中程序性细胞死亡所必需的

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摘要

Mtl1 is a member of a cell wall sensor family that monitors cell wall integrity in budding yeast. In response to cell wall stress, Mtl1 activates the cell wall integrity (CWI) MAP kinase pathway which transmits this signal to the nucleus to effect changes in gene expression. One target of the CWI MAP kinase is cyclin C, a negative regulator of stress response genes. CWI activation results in cyclin C relocalization from the nucleus to the cytoplasm where it stimulates programmed cell death (PCD) before it is destroyed. This report demonstrates that under low oxidative stress conditions, a combination of membrane sensors, Mtl1 and either Wsc1 or Mid2, are required jointly to transmit the oxidative stress signal to initiate cyclin C destruction. However, when exposed to elevated oxidative stress, additional pathways independent of these three sensor proteins are activated to destroy cyclin C. In addition,N-glycosylation is important for Mtl1 function as mutating the receptor residue (Asn42) or an enzyme required for synthesis ofN-acetylglucosamine (Gfa1) reduces sensor activity. Finally, combininggfa1-1with the cyclin C null allele induces a severe synthetic growth defect. This surprising result reveals a previously unknown genetic interaction between cyclin C and plasma membrane integrity.
机译:Mtl1是细胞壁传感器家族的成员,该家族可监测发芽酵母中的细胞壁完整性。响应细胞壁应激,Mtl1激活细胞壁完整性(CWI)MAP激酶途径,该途径将该信号传递至细胞核以影响基因表达的变化。 CWI MAP激酶的一个靶标是细胞周期蛋白C,它是应激反应基因的负调节剂。 CWI激活导致细胞周期蛋白C从细胞核重新定位到细胞质,并在细胞被破坏之前刺激程序性细胞死亡(PCD)。该报告表明,在低氧化应激条件下,膜传感器Mtl1和Wsc1或Mid2的组合需要共同传递氧化应激信号以启动细胞周期蛋白C的破坏。但是,当暴露于高水平的氧化应激时,与这三种传感器蛋白无关的其他途径也被激活,以破坏细胞周期蛋白C。此外,N-糖基化对于Mtl1的重要作用是突变受体残基(Asn42)或合成N所需的酶-乙酰氨基葡萄糖(Gfa1)会降低传感器的活性。最后,将gfa1-1与细胞周期蛋白C无效等位基因结合会导致严重的合成生长缺陷。这一令人惊讶的结果揭示了细胞周期蛋白C与质膜完整性之间先前未知的遗传相互作用。

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