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首页> 外文期刊>Cell Communication and Signaling >CaGdt1 plays a compensatory role for the calcium pump CaPmr1 in the regulation of calcium signaling and cell wall integrity signaling in Candida albicans
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CaGdt1 plays a compensatory role for the calcium pump CaPmr1 in the regulation of calcium signaling and cell wall integrity signaling in Candida albicans

机译:CaGdt1在白色念珠菌中调节钙信号传导和细胞壁完整性信号传导中对钙泵CaPmr1起到补偿作用

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Saccharomyces cerevisiae ScGdt1 and mammalian TMEM165 are two members of the UPF0016 membrane protein family that is likely to form a new group of Ca2+/H+ antiporter and/or a Mn2+ transporter in the Golgi apparatus. We have previously shown that Candida albicans CaGDT1 is a functional ortholog of ScGDT1 in the response of S. cerevisiae to calcium stress. However, how CaGdt1 together with the Golgi calcium pump CaPmr1 regulate calcium homeostasis and cell wall integrity in this fungal pathogen remains unknown. Chemical sensitivity was tested by dilution assay. Cell survival was examined by measuring colony-forming units and staining with Annexin V-FITC and propidium iodide. Calcium signaling was examined by expression of downstream target gene CaUTR2, while cell wall integrity signaling was revealed by detection of phosphorylated Mkc1 and Cek1. Subcellular localization of CaGdt1 was examined through direct and indirect immunofluorescent approaches. Transcriptomic analysis was carried out with RNA sequencing. This study shows that Candida albicans CaGDT1 is also a functional ortholog of ScGDT1 in the response of S. cerevisiae to cell wall stress. CaGdt1 is localized in the Golgi apparatus but at distinct sites from CaPmr1 in C. albicans. Loss of CaGDT1 increases the sensitivity of cell lacking CaPMR1 to cell wall and ER stresses. Deletion of CaGDT1 and/or CaPMR1 increases calcium uptake and activates the calcium/calcineurin signaling. Transcriptomic profiling reveals that core functions shared by CaGdt1 and CaPmr1 are involved in the regulation of cellular transport of metal ions and amino acids. However, CaGdt1 has distinct functions from CaPmr1. Chitin synthase gene CHS2 is up regulated in all three mutants, while CHS3 is only up regulated in the pmr1/pmr1 and the gdt1/gdt1 pmr1/pmr1 mutants. Five genes (DIE2, STT3, OST3, PMT1 and PMT4) of glycosylation pathway and one gene (SWI4) of the cell wall integrity (CWI) pathway are upregulated due to deletion of CaGDT1 and/or CaPMR1. Consistently, deletion of either CaPMR1 or CaGDT1 activates the CaCek1-mediated CWI signaling in a cell wall stress-independent fashion. Calcineurin function is required for the integrity of the cell wall and vacuolar compartments of cells lacking both GDT1 and CaPMR1. CaPmr1 is the major player in the regulation of calcium homeostasis and cell wall stress, while CaGdt1 plays a compensatory role for CaPmr1 in the Golgi compartment in C. albicans.
机译:酿酒酵母ScGdt1和哺乳动物TMEM165是UPF0016膜蛋白家族的两个成员,它们很可能在高尔基体中形成一组新的Ca2 + / H +反向转运蛋白和/或Mn2 +转运蛋白。先前我们已经证明白色念珠菌CaGDT1是酿酒酵母对钙胁迫的响应中ScGDT1的功能直系同源物。但是,如何在这种真菌病原体中CaGdt1与高尔基钙泵CaPmr1一起调节钙稳态和细胞壁完整性仍然未知。通过稀释测定法测试化学敏感性。通过测量集落形成单位并用膜联蛋白V-FITC和碘化丙啶染色来检查细胞存活。通过下游靶基因CaUTR2的表达检查钙信号,而通过检测磷酸化的Mkc1和Cek1揭示细胞壁完整性信号。通过直接和间接免疫荧光方法检查了CaGdt1的亚细胞定位。用RNA测序进行转录组学分析。这项研究表明白色念珠菌CaGDT1也是酿酒酵母对细胞壁应力的响应中ScGDT1的功能直系同源物。 CaGdt1定位在高尔基体中,但位于白色念珠菌中CaPmr1的不同位置。 CaGDT1的丢失增加了缺少CaPMR1的细胞对细胞壁和内质网应激的敏感性。 CaGDT1和/或CaPMR1的缺失会增加钙的摄取并激活钙/钙调神经磷酸信号。转录组分析显示,CaGdt1和CaPmr1共有的核心功能与金属离子和氨基酸的细胞运输调控有关。但是,CaGdt1具有与CaPmr1不同的功能。几丁质合酶基因CHS2在所有三个突变体中均上调,而CHS3仅在pmr1 / pmr1和gdt1 / gdt1 pmr1 / pmr1突变体中上调。由于CaGDT1和/或CaPMR1的缺失,糖基化途径的五个基因(DIE2,STT3,OST3,PMT1和PMT4)和细胞壁完整性(CWI)途径的一个基因(SWI4)被上调。一致地,CaPMR1或CaGDT1的缺失以细胞壁应激独立的方式激活CaCek1介导的CWI信号传导。钙调神经磷酸酶功能是缺乏GDT1和CaPMR1的细胞壁和液泡腔室完整性所必需的。 CaPmr1是钙稳态和细胞壁应激调节的主要参与者,而CaGdt1在白色念珠菌的高尔基体中对CaPmr1起补偿作用。

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