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Screening for proteins related to the biosynthesis of hispidin and its derivatives in Phellinus igniarius using iTRAQ proteomic analysis

机译:使用ITRAQ蛋白质组学分析,筛选与植物生物合成的蛋白质及其衍生物相关的蛋白质及其衍生物

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Hispidin (HIP) and its derivatives, a class of natural fungal metabolites, possess complex chemical structures with extensive pharmacological activities. Phellinus igniarius, the most common source of HIP, can be used as both medicine and food. However, the biosynthetic pathway of HIP in P. igniarius remains unclear and we have a limited understanding of the regulatory mechanisms related to HIP. In this work, we sought to illustrate a biosynthesis system for hispidin and its derivatives at the protein level. We found that tricetolatone (TL) is a key biosynthetic precursor in the biosynthetic pathway of hispidin and that its addition led to increased production of hispidin and various hispidin derivatives. Based on the changes in the concentrations of precursors and intermediates, key timepoints in the biosynthetic process were identified. We used isobaric tags for relative and absolute quantification (iTRAQ) to study dynamic changes of related proteins in vitro. The 270 differentially expressed proteins were determined by GO enrichment analysis to be primarily related to energy metabolism, oxidative phosphorylation, and environmental stress responses after TL supplementation. The differentially expressed proteins were related to ATP synthase, NAD binding protein, oxidoreductase, and other elements associated with electron transfer and dehydrogenation reactions during the biosynthesis of hispidin and its derivatives. Multiple reaction monitoring (MRM) technology was used to selectively verify the iTRAQ results, leading us to screen 11 proteins that were predicted to be related to the biosynthesis pathways. These findings help to clarify the molecular mechanism of biosynthesis of hispidin and its derivatives and may serve as a foundation for future strategies to identify new hispidin derivatives.
机译:Hispidin(臀部)及其衍生物,一类天然真菌代谢物,具有广泛的药理学活动的复杂化学结构。 Phellinus Igniarius是最常见的髋关节来源,可用作药物和食物。然而,P. Igniarius的髋关节的生物合成途径仍然不清楚,并且我们对与髋关节有关的调节机制有限的了解。在这项工作中,我们试图说明蛋白酶的生物合成系统及其蛋白质水平的衍生物。我们发现Tricetolatone(TL)是碧肽生物合成途径的关键生物合成前体,并且其加入导致碧脂蛋白和各种赤脂蛋白衍生物的产生。基于前体和中间体浓度的变化,鉴定了生物合成过程中的关键时间点。我们使用了用于亲属和绝对量化(ITRAQ)的等离标签,以研究相关蛋白质的动态变化。通过富集分析确定270个差异表达的蛋白质主要与TL补充后的能量代谢,氧化磷酸化和环境应激反应相关。差异表达的蛋白质与ATP合酶,NAD结合蛋白,氧化还原酶和与电子转移和脱氢反应相关的其他元素有关,并且在Hispidin及其衍生物的生物合成期间与电子转移和脱氢反应相关。使用多重反应监测(MRM)技术来选择性地验证ITRAQ结果,导致我们筛选预测与生物合成途径有关的11种蛋白质。这些发现有助于澄清赤霉病和其衍生品的生物合成的分子机制,可作为未来策略识别新的孤立蛋白衍生物的策略。

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