Laboratory for Yeast Molecular and Cell Biology, The Research Center of Fermentation Technology, School of Agricultural Engineering and Food Science, Shandong University of Technology, Zibo 255000, Shandong, China.
College of Life Sciences, Huaibei Normal University, Huaibei 235000, Anhui, China.
Fungal Genet Biol. 2018 Jun;115:1-8. doi: 10.1016/j.fgb.2018.04.001. Epub 2018 Apr 3.
Pmr1 is the Golgi/ER calcium pump, while Rch1 is a newly identified negative regulator of calcium influx in the plasma membrane of yeast cells. We show here that CaRch1 plays a dominant role over CaPmr1 in response of Candida albicans to SDS and tunicamycin stresses, while CaPmr1 has a major role in cell wall stress. Deletion of CaRCH1 increases the calcium/calcineurin signaling level in cells lacking CaPMR1. Calcineurin function is required for the role of CaRch1 in SDS stresses, while it is required for the function of CaPmr1 under all conditions examined. Disruption of CaRCH1 alone does not reduce the cell wall chitin, mannan or β-glucan content, but lack of CaRCH1 slightly decreases the chitin content of cells lacking CaPMR1. Furthermore, CaRch1 and CaPmr1 have an additive effect on filamentation of C. albicans cells in vitro. Cells lacking both CaRCH1 and CaPMR1 and cells lacking CaPMR1 alone show a similar degree of virulence attenuation, being much more attenuated than cells lacking CaRCH1 alone. Therefore, CaRch1 genetically interacts with CaPmr1 in the regulation of in vitro filamentation in C. albicans.
Pmr1 是高尔基体/内质网钙泵,而 Rch1 是酵母细胞质膜中钙内流的新鉴定的负调节剂。我们在这里表明,在对 SDS 和衣霉素应激的响应中,CaRch1 比 CaPmr1 起着更重要的作用,而 CaPmr1 在细胞壁应激中起着主要作用。CaRCH1 的缺失增加了缺乏 CaPMR1 的细胞中的钙/钙调神经磷酸酶信号水平。钙调神经磷酸酶功能对于 CaRch1 在 SDS 应激中的作用是必需的,而对于所有检查条件下 CaPmr1 的功能是必需的。单独破坏 CaRCH1 不会降低细胞壁几丁质、甘露聚糖或β-葡聚糖的含量,但缺乏 CaRCH1 会略微降低缺乏 CaPMR1 的细胞中的几丁质含量。此外,CaRch1 和 CaPmr1 对 C. albicans 细胞体外丝状形成有累加效应。缺乏 CaRCH1 和 CaPMR1 的细胞和单独缺乏 CaPMR1 的细胞表现出相似程度的毒力减弱,比单独缺乏 CaRCH1 的细胞弱得多。因此,CaRch1 在 C. albicans 体外丝状形成的调控中与 CaPmr1 存在遗传相互作用。