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首页> 外文期刊>Eukaryotic cell >Protein Phosphatase Pph3 and Its Regulatory Subunit Psy2 Regulate Rad53 Dephosphorylation and Cell Morphogenesis during Recovery from DNA Damage in Candida albicans
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Protein Phosphatase Pph3 and Its Regulatory Subunit Psy2 Regulate Rad53 Dephosphorylation and Cell Morphogenesis during Recovery from DNA Damage in Candida albicans

机译:蛋白磷酸酶Pph3及其调节亚基Psy2调节白色念珠菌DNA损伤恢复过程中Rad53的去磷酸化和细胞形态发生。

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The ability of the pathogenic fungus Candida albicans to switch cellular morphologies is important for infection and virulence. Recent studies have revealed that C. albicans yeast cells can switch to filamentous growth under genotoxic stress in a manner dependent on the DNA replication/damage checkpoint. Here, we have investigated the functions of Pph3 (orf19.4378) and Psy2 (orf19.3685), whose orthologues in Saccharomyces cerevisiae mediate the dephosphorylation of the DNA damage checkpoint kinase Rad53 and the histone variant H2AX during recovery from DNA damage. Deleting PPH3 or PSY2 causes hypersensitivity to DNA-damaging agents, including cisplatin, methylmethane sulfonate (MMS), and UV light. In addition, pph3Δ and psy2Δ cells exhibit strong filamentous growth under genotoxic stress. Flow cytometry analysis shows that the mutant cells have lost the ability to adapt to genotoxic stress and remain arrested even after the stress is withdrawn. Furthermore, we show that Pph3 and Psy2 are required for the dephosphorylation of Rad53, but not H2AX, during DNA damage recovery. Taken together, these results show that C. albicans Pph3 and Psy2 have important roles in mediating genotoxin-induced filamentous growth and regulating Rad53 dephosphorylation.
机译:致病真菌白色念珠菌改变细胞形态的能力对于感染和毒力很重要。最近的研究表明,白色念珠菌酵母细胞可以在遗传毒性胁迫下以依赖于DNA复制/损伤检查点的方式转换为丝状生长。在这里,我们研究了Pph3(orf19.4378)和Psy2(orf19.3685)的功能,它们在酿酒酵母中的直向同源物介导了DNA损伤检查点激酶Rad53和组蛋白变体H2AX的脱磷酸化,从DNA损伤中恢复。删除 PPH3 PSY2 会引起对DNA破坏剂(包括顺铂,甲磺酸甲酯(MMS)和紫外线)的超敏反应。另外, pph3 Δ和 psy2 Δ细胞在遗传毒性胁迫下均表现出较强的丝状生长。流式细胞仪分析表明,突变细胞失去了适应遗传毒性应力的能力,即使在消除应力后仍被阻滞。此外,我们显示在DNA损伤恢复过程中,Pph3和Psy2是Rad53而不是H2AX脱磷酸所必需的。总之,这些结果表明白色念珠菌Pph3和Psy2在介导基因毒素诱导的丝状生长和调节Rad53的去磷酸化中起重要作用。

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