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首页> 外文期刊>Genomics >The tricarboxylic acid cycle, cell wall integrity pathway, cytokinesis and intracellular pH homeostasis are involved in the sensitivity of Candida albicans cells to high levels of extracellular calcium
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The tricarboxylic acid cycle, cell wall integrity pathway, cytokinesis and intracellular pH homeostasis are involved in the sensitivity of Candida albicans cells to high levels of extracellular calcium

机译:三羧酸循环,细胞壁完整性途径,细胞因子和细胞内pH稳态涉及Candida蛋白质细胞对高水平细胞外钙的敏感性

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摘要

Through a genetic screen we have identified 21 genes whose inactivation renders Candida albicans cells sensitive to high levels of extracellular calcium. These genes are involved in the tricarboxylic acid cycle, cell wall integrity pathway, cytokinesis, intracellular pH homeostasis, magnesium transport, as well as DNA damage response and repair processes. The calcium sensitivity due to inactivation of nine of these genes can be partially or completely suppressed by cyclosporine A, an inhibitor of calcineurin. Therefore, the calcium sensitivity of nearly a half of these 21 mutations is at least partially due to the activation of calcium/calcineurin signaling. Our work provides a basis for further understanding the regulation of calcium homeostasis in this important human fungal pathogen.
机译:通过遗传筛查,我们已经确定了21种基因,其灭活使念珠菌敏感的细胞对高水平的细胞外钙敏感。 这些基因涉及三羧酸循环,细胞壁完整性途径,细胞因子,细胞内pHoosoTasis,镁转运以及DNA损伤反应和修复过程。 由于这些基因的氮素灭活引起的钙敏感性可以通过环孢菌素A,钙调正素抑制剂部分或完全抑制这些基因。 因此,近一半突变的钙敏感性至少部分地是由于钙/钙素信号传导的激活。 我们的作品为进一步了解在这一重要人类真菌病原体中进一步了解钙稳态的调节。

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