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Cryptococcus neoformans Yop1, an endoplasmic reticulum curvature-stabilizing protein, participates with Sey1 in influencing fluconazole-induced disomy formation

机译:新型隐球菌Yop1,内质网曲率稳定蛋白,与Sey1参与影响氟康唑诱导的二体形成

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摘要

Cryptococcus neoformans, an opportunistic fungal pathogen, manifests an intrinsic adaptive mechanism of resistance toward uconazole (FLC) termed heteroresistance. Heteroresistance is characterized by the emergence of minor resistant subpopulations at levels of FLC that are higher than the strain’s minimum inhibitory concentration. The heteroresistant clones that tolerate high concentrations of FLC often contain disomic chromosome 4 (Chr4). SEY1, GLO3, and GCS2 on Chr4 are responsible for endoplasmic reticulum (ER) integrity and important for Chr4 disomy formation under FLC stress. We sought an evidence of a direct relationship between ER morphology and Chr4 disomy formation. Deletion of the YOP1 gene on Chr7, which encodes an ER curvature-stabilizing protein that interacts with Sey1, perturbed ER morphology without affecting FLC susceptibility or the frequency of FLCinduced disomies. However, deletion of both YOP1 and SEY1, not only perturbed ER morphology more severely than in sey1Δ or yop1Δ strains, but also abrogated the FLC-induced disomy. Although the heteroresistance phenotype was retained in the sey1Δyop1Δ strains, tolerance to FLC appeared to have resulted not from chromosome duplication but from gene amplication restricted to the region surrounding ERG11 on Chr1. These data support the importance of ER integrity in C. neoformans for the formation of disomy under FLC stress.
机译:新型隐球菌(Cryptococcus neoformans)是一种机会性真菌病原体,显示了对称为异抗性的uconazole(FLC)抗性的内在适应机制。异抗性的特征在于,在高于菌株最低抑菌浓度的FLC水平上,出现了次要抗性亚群。耐受高浓度FLC的异抗性克隆通常包含二体染色体4(Chr4)。 Chr4上的SEY1,GLO3和GCS2负责内质网(ER)的完整性,对于FLC应力下Chr4二体的形成很重要。我们寻求证据表明ER形态与Chr4二体形成之间存在直接关系。在Chr7上删除YOP1基因,该基因编码与Sey1相互作用的ER曲率稳定蛋白,扰动ER形态,而不影响FLC敏感性或FLC诱导的二体组频率。然而,YOP1和SEY1的缺失不仅比sey1Δ或yop1Δ菌株更严重地干扰了ER形态,而且废除了FLC诱导的二体性。尽管sey1Δyop1Δ菌株中保留了异抗性表型,但对FLC的耐受性似乎不是由于染色体重复,而是由于基因扩增限制在Chr1上ERG11周围。这些数据支持在C.neoformans中ER完整性对于FLC胁迫下二体形成的重要性。

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