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The activity of RTA2, a downstream effector of the calcineurin pathway, is required during tunicamycin-induced ER stress response in Candida albicans

机译:在白霉素假丝霉素诱导的内质网应激反应过程中,钙调神经磷酸酶途径的下游效应子RTA2的活性是必需的。

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In this study, we demonstrate a novel function of a downstream effector molecule of the calcineurin pathway, RTA2 (Resistance To Aminocholesterol), in ER stress response. The deletion of RTA2 increases susceptibility to the ER stressor tunicamycin and morpholine-like drug, 7-aminocholesterol. Additionally, the expression of RTA2 is also transcriptionally induced by ergosterol biosynthesis inhibitors and cell-wall-damaging agents. As tunicamycin induces the unfolded protein response pathway (UPR) via the transcription factor, HAC1, we monitored the expression of a subset of HAC1-dependent UPR target genes in rta2 Delta/Delta cells. Upon tunicamycin exposure, rta2 Delta/Delta cells displayed a significantly reduced expression of UPR genes, in spite of only a moderate decrease in the HAC1 spliced mRNA levels and no change in Hac1 protein levels. Furthermore, hac1 Delta/Delta rta2 Delta/Delta cells display an exacerbated sensitivity to tunicamycin compared to the single mutants. We propose that functional RTA2 is requisite for the regulation of Hac1p-dependent UPR target genes to maximal levels, thereby assisting survival during ER stress. Collectively, this study proposes, for the first time, existence of an interplay between the Hac1p- and calcineurin-controlled networks via a downstream effector molecule of the latter, RTA2, to facilitate survival during ER stress in Candida albicans.
机译:在这项研究中,我们证明了钙调磷酸酶途径的下游效应分子RTA2(对氨基胆固醇的抵抗)在ER应激反应中具有新型功能。 RTA2的删除增加了对内质网应激因子衣霉素和吗啉样药物7-氨基胆固醇的敏感性。另外,麦角固醇生物合成抑制剂和细胞壁破坏剂也通过转录诱导RTA2的表达。当衣霉素通过转录因子HAC1诱导未折叠的蛋白反应途径(UPR)时,我们监测了rta2 Delta / Delta细胞中依赖HAC1的UPR靶基因子集的表达。衣霉素暴露后,尽管HAC1剪接的mRNA水平仅适度下降,而Hac1蛋白水平没有变化,但rta2 Delta / Delta细胞显示出UPR基因的表达显着降低。此外,与单个突变体相比,hac1 Delta / Delta rta2 Delta / Delta细胞显示出对衣霉素的加剧的敏感性。我们建议功能性RTA2是调节Hac1p依赖的UPR靶基因到最大水平所必需的,从而在ER应激期间协助生存。总的来说,这项研究首次提出,Hac1p和钙调磷酸酶控制的网络之间通过相互作用的下游效应分子RTA2之间存在相互作用,以促进白色念珠菌内质网应激期间的生存。

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