首页> 美国卫生研究院文献>Molecular Cellular Proteomics : MCP >Proteomic Analysis Reveals Distinct Metabolic Differences Between Granulocyte-Macrophage Colony Stimulating Factor (GM-CSF) and Macrophage Colony Stimulating Factor (M-CSF) Grown Macrophages Derived from Murine Bone Marrow Cells
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Proteomic Analysis Reveals Distinct Metabolic Differences Between Granulocyte-Macrophage Colony Stimulating Factor (GM-CSF) and Macrophage Colony Stimulating Factor (M-CSF) Grown Macrophages Derived from Murine Bone Marrow Cells

机译:蛋白质组学分析揭示了源自鼠骨髓细胞的粒细胞-巨噬细胞集落刺激因子(GM-CSF)和巨噬细胞集落刺激因子(M-CSF)生长的巨噬细胞之间的明显代谢差异。

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摘要

Macrophages are crucial in controlling infectious agents and tissue homeostasis. Macrophages require a wide range of functional capabilities in order to fulfill distinct roles in our body, one being rapid and robust immune responses. To gain insight into macrophage plasticity and the key regulatory protein networks governing their specific functions, we performed quantitative analyses of the proteome and phosphoproteome of murine primary GM-CSF and M-CSF grown bone marrow derived macrophages (GM-BMMs and M-BMMs, respectively) using the latest isobaric tag based tandem mass tag (TMT) labeling and liquid chromatography-tandem mass spectrometry (LC-MS/MS). Strikingly, metabolic processes emerged as a major difference between these macrophages. Specifically, GM-BMMs show significant enrichment of proteins involving glycolysis, the mevalonate pathway, and nitrogen compound biosynthesis. This evidence of enhanced glycolytic capability in GM-BMMs is particularly significant regarding their pro-inflammatory responses, because increased production of cytokines upon LPS stimulation in GM-BMMs depends on their acute glycolytic capacity. In contrast, M-BMMs up-regulate proteins involved in endocytosis, which correlates with a tendency toward homeostatic functions such as scavenging cellular debris. Together, our data describes a proteomic network that underlies the pro-inflammatory actions of GM-BMMs as well as the homeostatic functions of M-BMMs.
机译:巨噬细胞对于控制传染原和组织稳态至关重要。巨噬细胞需要广泛的功能才能在人体中发挥不同的作用,其中之一就是快速而强大的免疫反应。为了深入了解巨噬细胞的可塑性和控制其特定功能的关键调控蛋白网络,我们对鼠类原发性GM-CSF和M-CSF生长的骨髓衍生巨噬细胞(GM-BMM和M-BMM)的蛋白质组和磷酸化蛋白质组进行了定量分析。分别使用最新的基于等压标记的串联质谱标签(TMT)标记和液相色谱-串联质谱(LC-MS / MS)。令人惊讶的是,代谢过程是这些巨噬细胞之间的主要区别。具体而言,GM-BMMs表现出蛋白质的大量富集,涉及糖酵解,甲羟戊酸途径和氮化合物生物合成。 GM-BMM中糖酵解能力增强的证据就其促炎反应而言尤其重要,因为GM-BMM中LPS刺激后细胞因子产生的增加取决于其急性糖酵解能力。相反,M-BMMs上调参与胞吞作用的蛋白质,这与趋于稳态功能(如清除细胞碎片)的趋势有关。我们的数据一起描述了一个蛋白质组学网络,该网络是GM-BMMs的促炎作用以及M-BMMs的稳态功能的基础。

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