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首页> 外文期刊>BMC Microbiology >Interaction of the heterotrimeric G protein alpha subunit SSG-1 of Sporothrix schenckii with proteins related to stress response and fungal pathogenicity using a yeast two-hybrid assay
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Interaction of the heterotrimeric G protein alpha subunit SSG-1 of Sporothrix schenckii with proteins related to stress response and fungal pathogenicity using a yeast two-hybrid assay

机译:用酵母双杂交法测定申氏孢子虫的异三聚体G蛋白α亚基SSG-1与与应激反应和真菌致病性有关的蛋白质的相互作用

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摘要

Important biological processes require selective and orderly protein-protein interactions at every level of the signalling cascades. G proteins are a family of heterotrimeric GTPases that effect eukaryotic signal transduction through the coupling of cell surface receptors to cytoplasmic effector proteins. They have been associated with growth and pathogenicity in many fungi through gene knock-out studies. In Sporothrix schenckii, a pathogenic, dimorphic fungus, we previously identified a pertussis sensitive G alpha subunit, SSG-1. In this work we inquire into its interactions with other proteins. Using the yeast two-hybrid technique, we identified protein-protein interactions between SSG-1 and other important cellular proteins. The interactions were corroborated using co-immuneprecipitation. Using these techniques we identified a Fe/Mn superoxide dismutase (SOD), a glyceraldehyde-3-P dehydrogenase (GAPDH) and two ion transport proteins, a siderophore-iron transporter belonging to the Major Facilitator Superfamily (MFS) and a divalent-cation transporter of the Nramp (n atural r esistance-a ssociated m acrophage p rotein) family as interacting with SSG-1. The cDNA's encoding these proteins were sequenced and bioinformatic macromolecular sequence analyses were used for the correct classification and functional assignment. This study constitutes the first report of the interaction of a fungal G alpha inhibitory subunit with SOD, GAPDH, and two metal ion transporters. The identification of such important proteins as partners of a G alpha subunit in this fungus suggests possible mechanisms through which this G protein can affect pathogenicity and survival under conditions of environmental stress or inside the human host. The two ion transporters identified in this work are the first to be reported in S. schenckii and the first time they are identified as interacting with fungal G protein alpha subunits. The association of G protein alpha subunits to transport molecules reinforces the role of G proteins in the response to environmental signals and also highlights the involvement of fungal G protein alpha subunits in nutrient sensing in S. schenckii. These interactions suggest that these permeases could function as transceptors for G proteins in fungi.
机译:重要的生物学过程需要在信号级联的每个水平上进行选择性且有序的蛋白质-蛋白质相互作用。 G蛋白是异源三聚体GTPases的一个家族,可通过细胞表面受体与细胞质效应蛋白的偶联来实现真核信号转导。通过基因敲除研究,它们与许多真菌的生长和致病性有关。在Sporothrix schenckii,一种致病的二形性真菌中,我们先前鉴定了百日咳敏感的G alpha亚基SSG-1。在这项工作中,我们探究了其与其他蛋白质的相互作用。使用酵母双杂交技术,我们确定了SSG-1与其他重要细胞蛋白之间的蛋白-蛋白相互作用。使用共同免疫沉淀证实了相互作用。使用这些技术,我们确定了Fe / Mn超氧化物歧化酶(SOD),甘油醛3-P脱氢酶(GAPDH)和两个离子转运蛋白,属于主要促进剂超家族(MFS)的铁载体铁转运蛋白和二价阳离子与SSG-1相互作用时,Nramp(天然抗性-相关的巨噬细胞蛋白)家族的转运蛋白。对编码这些蛋白质的cDNA进行测序,并使用生物信息学大分子序列分析进行正确的分类和功能分配。这项研究构成了真菌G alpha抑制性亚基与SOD,GAPDH和两个金属离子转运蛋白相互作用的第一个报告。鉴定这种重要的蛋白质作为该真菌中Gα亚基的伴侣,提示了这种G蛋白可能在环境压力或人类宿主内部影响致病性和存活的机制。在这项工作中确定的两个离子转运蛋白是首次在s。schenckii中报道,也是首次将它们鉴定为与真菌G蛋白α亚基相互作用。 G蛋白α亚基与转运分子的结合增强了G蛋白在对环境信号的响应中的作用,并且还突出了真菌G蛋白α亚基参与了S. schenckii的营养感测。这些相互作用表明这些渗透酶可以充当真菌中G蛋白的收发器。

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