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脂多糖上调磷酸肌醇循环的棕榈酰化酶:蛋白质组学研究的新见解。

Lipopolysaccharide Upregulates Palmitoylated Enzymes of the Phosphatidylinositol Cycle: An Insight from Proteomic Studies.

机构信息

From the ‡Laboratory of Molecular Membrane Biology, Department of Cell Biology.

§Laboratory of Cell Biophysics, Department of Molecular and Cellular Neurobiology.

出版信息

Mol Cell Proteomics. 2018 Feb;17(2):233-254. doi: 10.1074/mcp.RA117.000050. Epub 2017 Dec 7.

Abstract

Lipopolysaccharide (LPS) is a component of the outer membrane of Gram-negative bacteria that induces strong proinflammatory reactions of mammals. These processes are triggered upon sequential binding of LPS to CD14, a GPI-linked plasma membrane raft protein, and to the TLR4/MD2 receptor complex. We have found earlier that upon LPS binding, CD14 triggers generation of phosphatidylinositol 4,5-bisphosphate [PI(4,5)P], a lipid controlling subsequent proinflammatory cytokine production. Here we show that stimulation of RAW264 macrophage-like cells with LPS induces global changes of the level of fatty-acylated, most likely palmitoylated, proteins. Among the acylated proteins that were up-regulated in those conditions were several enzymes of the phosphatidylinositol cycle. Global profiling of acylated proteins was performed by metabolic labeling of RAW264 cells with 17ODYA, an analogue of palmitic acid functionalized with an alkyne group, followed by detection and enrichment of labeled proteins using biotin-azide/streptavidin and their identification with mass spectrometry. This proteomic approach revealed that 154 fatty-acylated proteins were up-regulated, 186 downregulated, and 306 not affected in cells stimulated with 100 ng/ml LPS for 60 min. The acylated proteins affected by LPS were involved in diverse biological functions, as found by Ingenuity Pathway Analysis. Detailed studies of 17ODYA-labeled and immunoprecipitated proteins revealed that LPS induces -palmitoylation, hence activation, of type II phosphatidylinositol 4-kinase (PI4KII) β, which phosphorylates phosphatidylinositol to phosphatidylinositol 4-monophosphate, a PI(4,5)P precursor. Silencing of PI4KIIβ and PI4KIIα inhibited LPS-induced expression and production of proinflammatory cytokines, especially in the TRIF-dependent signaling pathway of TLR4. Reciprocally, this LPS-induced signaling pathway was significantly enhanced after overexpression of PI4KIIβ or PI4KIIα; this was dependent on palmitoylation of the kinases. However, the -palmitoylation of PI4KIIα, hence its activity, was constitutive in RAW264 cells. Taken together the data indicate that LPS triggers -palmitoylation and activation of PI4KIIβ, which generates PI(4)P involved in signaling pathways controlling production of proinflammatory cytokines.

摘要

脂多糖 (LPS) 是革兰氏阴性细菌外膜的组成部分,可诱导哺乳动物产生强烈的促炎反应。这些过程是通过 LPS 与 CD14(一种 GPI 连接的质膜筏蛋白)和 TLR4/MD2 受体复合物的顺序结合触发的。我们之前发现,LPS 结合后,CD14 会触发磷脂酰肌醇 4,5-二磷酸 [PI(4,5)P] 的生成,这种脂质控制随后促炎细胞因子的产生。在这里,我们表明用 LPS 刺激 RAW264 样巨噬细胞会诱导脂肪酸酰化蛋白,即可能是棕榈酰化蛋白水平的全局变化。在这些条件下上调的酰化蛋白中,有几种磷脂酰肌醇循环酶。通过用 17ODYA(一种带有炔基的棕榈酸功能化类似物)对 RAW264 细胞进行代谢标记,然后使用生物素-叠氮化物/链霉亲和素检测和富集标记的蛋白质,并通过质谱进行鉴定,对酰化蛋白进行了全局分析。这种蛋白质组学方法表明,用 100ng/ml LPS 刺激 60 分钟后,有 154 种脂肪酸酰化蛋白上调,186 种下调,306 种不受影响。通过 Ingenuity Pathway Analysis 发现,受 LPS 影响的酰化蛋白参与了多种生物学功能。对 17ODYA 标记和免疫沉淀的蛋白质进行详细研究表明,LPS 诱导 II 型磷脂酰肌醇 4-激酶 (PI4KII)β 的 -棕榈酰化,从而激活它,PI4KIIβ 将磷脂酰肌醇磷酸化为磷脂酰肌醇 4-单磷酸,即 PI(4,5)P 的前体。PI4KIIβ 和 PI4KIIα 的沉默抑制了 LPS 诱导的促炎细胞因子的表达和产生,尤其是在 TLR4 的 TRIF 依赖性信号通路中。相反,在过表达 PI4KIIβ 或 PI4KIIα 后,这种 LPS 诱导的信号通路显著增强;这依赖于激酶的棕榈酰化。然而,PI4KIIα 的 -棕榈酰化,因此其活性,在 RAW264 细胞中是组成型的。总的来说,这些数据表明 LPS 触发 PI4KIIβ 的 -棕榈酰化和激活,生成参与控制促炎细胞因子产生的信号通路的 PI(4)P。

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