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Impact of Protein Palmitoylation on the Virulence Potential of Cryptococcus neoformans

机译:蛋白质棕榈酰化对新型隐球菌毒力的影响

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摘要

The localization and specialized function of Ras-like proteins are largely determined by posttranslational processing events. In a highly regulated process, palmitoyl groups may be added to C-terminal cysteine residues, targeting these proteins to specific membranes. In the human fungal pathogen Cryptococcus neoformans, Ras1 protein palmitoylation is essential for growth at high temperature but is dispensable for sexual differentiation. Ras1 palmitoylation is also required for localization of this protein on the plasma membrane. Together, these results support a model in which specific Ras functions are mediated from different subcellular locations. We therefore hypothesize that proteins that activate Ras1 or mediate Ras1 localization to the plasma membrane will be important for C. neoformans pathogenesis. To further characterize the Ras1 signaling cascade mediating high-temperature growth, we have identified a family of protein S-acyltransferases (PATs), enzymes that mediate palmitoylation, in the C. neoformans genome database. Deletion strains for each candidate gene were generated by homogenous recombination, and each mutant strain was assessed for Ras1-mediated phenotypes, including high-temperature growth, morphogenesis, and sexual development. We found that full Ras1 palmitoylation and function required one particular PAT, Pfa4, and deletion of the PFA4 gene in C. neoformans resulted in altered Ras1 localization to membranes, impaired growth at 37°C, and reduced virulence.
机译:Ras样蛋白的定位和专门功能很大程度上取决于翻译后加工事件。在高度调节的过程中,可将棕榈酰基基团添加至C端半胱氨酸残基,从而将这些蛋白质靶向特定膜。在人类真菌病原体新隐球菌中,Ras1蛋白棕榈酰化对于高温下的生长是必不可少的,但对于性别分化是必不可少的。 Ras1棕榈酰化也需要此蛋白在质膜上的定位。总之,这些结果支持了一个模型,其中特定的Ras功能是从不同的亚细胞位置介导的。因此,我们假设激活Ras1或介导Ras1定位到质膜的蛋白质对于新孢子虫的发病机理将很重要。为进一步表征介导高温生长的Ras1信号级联反应,我们在新孢梭菌基因组数据库中鉴定了一个蛋白S-酰基转移酶(PAT)家族,其是介导棕榈酰化的酶。通过同源重组产生每个候选基因的缺失菌株,并评估每个突变菌株的Ras1介导的表型,包括高温生长,形态发生和性发育。我们发现,完整的Ras1棕榈酰化和功能需要一个特定的PAT,Pfa4,并且在新孢梭菌中PFA4基因的缺失会导致Ras1定位于膜的改变,在37°C下损害生长并降低毒力。

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