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首页> 外文期刊>Journal of proteome research >Scanning Quadrupole Data-Independent Acquisition, Part B: Application to the Analysis of the Calcineurin-Interacting Proteins during Treatment of Aspergillus fumigatus with Azole and Echinocandin Antifungal Drugs
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Scanning Quadrupole Data-Independent Acquisition, Part B: Application to the Analysis of the Calcineurin-Interacting Proteins during Treatment of Aspergillus fumigatus with Azole and Echinocandin Antifungal Drugs

机译:扫描四极杆数据无关的采集,B部分:应用于钙碱相互作用蛋白的分析,治疗含有唑氧吡啉和echinocandin抗真菌药物

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摘要

Calcineurin is a critical cell-signaling protein that orchestrates growth, stress response, virulence, and antifungal drug resistance in several fungal pathogens. Blocking calcineurin signaling increases the efficacy of several currently available antifungals and suppresses drug resistance. We demonstrate the application of a novel scanning quadrupole DIA method for the analysis of changes in the proteins coimmunoprecipitated with calcineurin during therapeutic antifungal drug treatments of the deadly human fungal pathogen Aspergillus fumigatus. Our experimental design afforded an assessment of the precision of the method as demonstrated by peptide- and protein-centric analysis from eight replicates of the study pool QC samples. Two distinct classes of clinically relevant antifungal drugs that are guideline recommended for the treatment of invasive “aspergillosis” caused by Aspergillus fumigatus , the azoles (voriconazole) and the echinocandins (caspofungin and micafungin), which specifically target the fungal plasma membrane and the fungal cell wall, respectively, were chosen to distinguish variations occurring in the proteins coimmunoprecipitated with calcineurin. Novel potential interactors were identified in response to the different drug treatments that are indicative of the possible role for calcineurin in regulating these effectors. Notably, treatment with voriconazole showed increased immunoprecipitation of key proteins involved in membrane ergosterol biosynthesis with calcineurin. In contrast, echinocandin (caspofungin or micafungin) treatments caused increased immunoprecipitation of proteins involved in cell-wall biosynthesis and septation. Furthermore, abundant coimmunoprecipitation of ribosomal proteins with calcineurin occurred exclusively in echinocandins treatment, indicating reprogramming of cellular growth mechanisms during different antifungal drug treatments. While variations in the observed calcineurin immunoprecipitated proteins may also be du
机译:煅烧肽是一种关键的细胞信号传导蛋白,其在几种真菌病原体中衡量生长,应激响应,毒力和抗真菌药物抗性。阻断钙素信号传导增加了几种当前可用的抗真菌的功效并抑制了耐药性。我们证明了一种新型扫描四极杆DIA法在致命人真菌病原体曲霉病患者治疗抗真菌药物治疗期间与钙皮蛋白的蛋白质沉淀的变化分析。我们的实验设计提供了通过肽和蛋白质为中心分析从研究池QC样品的八个重复所证明的方法的精确度评估。两种不同类别的临床相关的抗真菌药物,该临床相关的抗真菌药物推荐用于治疗Aspergillus fumigatus,唑(伏立康唑)和echinocandins(Caspofungin和Micafungin)引起的侵袭性的“曲霉菌”,其特异性靶向真菌血浆膜和真菌细胞选择墙壁分别选择区分蛋白质中发生的变化与钙素蛋白。鉴定了新的潜在交互式响应于不同的药物处理,该药物治疗表明钙调解蛋白在调节这些效应中的可能作用。值得注意的是,voriconazole的治疗显示伴有钙素蛋白膜Ergosterol生物合成中参与的关键蛋白质的免疫沉淀。相比之下,埃希泛素(Caspofungin或Micafungin)治疗导致蛋白质的免疫沉淀增加,所述蛋白质参与细胞壁生物合成和荚膜。此外,用钙蛋白素的丰富的核糖蛋白酶蛋白沉淀,仅在邻苯胺蛋白处理中发生,表明在不同抗真菌药物处理中的细胞生长机制的重编程。虽然观察到的钙素免疫沉淀蛋白的变化也可能是du

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