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首页> 外文期刊>Journal of microbiology and biotechnology >Molecular Characterization of Adenylyl Cyclase Complex Proteins Using Versatile Protein-Tagging Plasmid Systems in Cryptococcus neoformans
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Molecular Characterization of Adenylyl Cyclase Complex Proteins Using Versatile Protein-Tagging Plasmid Systems in Cryptococcus neoformans

机译:使用蛋白质标记在碱性蛋白标记的碱性蛋白质标记蛋白质中的分子表征腺苷蛋白标记蛋白质

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In this study, we aimed to generate a series of versatile tagging plasmids that can be used in diverse molecular biological studies of the fungal pathogen Cryptococcus neoformans. We constructed 12 plasmids that can be used to tag a protein of interest with a GFP, mCherry, 4xFLAG, or 6xHA, along with nourseothricin-, neomycin-, or hygromycin- resistant selection markers. Using this tagging plasmid set, we explored the adenylyl cyclase complex (ACC), consisting of adenylyl cyclase (Cac1) and its associated protein Aca1, in the cAMP-signaling pathway, which is critical for the pathogenicity of C. neoformans. We found that Cac1-mCherry and Aca1-GFP were mainly colocalized as punctate forms in the cell membrane and non-nuclear cellular organelles. We also demonstrated that Cac1 and Aca1 interacted in vivo by co-immunoprecipitation, using Cac1-6xHA and Aca1-4xFLAG tagging strains. Bimolecular fluorescence complementation further confirmed the in vivo interaction of Cac1 and Aca1 in live cells. Finally, protein pull-down experiments using aca1 Delta:: ACA1-GFP and aca1 Delta:: ACA1GFP cac1 Delta strains and comparative mass spectrometry analysis identified Cac1 and a number of other novel ACC-interacting proteins. Thus, this versatile tagging plasmid system will facilitate diverse mechanistic studies in C. neoformans and further our understanding of its biology.
机译:在这项研究中,我们旨在产生一系列通用标记质粒,可用于真菌病原体碱性细胞新族裔的不同分子生物学研究。我们构建了12种质粒,可用于标记GFP,MCHERRY,4xFLAG或6xHA的感兴趣的蛋白质,以及涉及涉及涉及的涉及的新霉素或潮霉素的选择标志物。使用该标记质粒集合,我们探讨了饲养途径中的腺苷酸环酶(CAC1)及其相关蛋白ACA1组成的腺苷酸环酶复合物(ACC),这对于C.Neoformans的致病性至关重要。我们发现CaC1-MCHERRY和ACA1-GFP主要是细胞膜和非核细胞细胞器中点状形式的分致大致分析。我们还证明CAC1和ACA1通过共同免疫沉淀在体内与ACA1-4XFLAG标记标签菌株中的体内相互作用。双分子荧光互补进一步证实了CaC1和ACA1在活细胞中的体内相互作用。最后,使用ACA1δ的蛋白质下拉实验:: ACA1-GFP和ACA1δ:: ACA1GFP CAC1趋毒剂和对比质谱分析鉴定CAC1和许多其他新型的ACC相互作用蛋白。因此,这种通用标记质粒系统将促进C. Neoformans中的不同机械研究,并进一步了解其生物学的理解。

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