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脂筏依赖性内吞作用通过下调脂多糖(LPS)受体的细胞表面表达,对J774巨噬细胞样细胞对LPS的反应性产生负向调节作用。

Lipid raft-dependent endocytosis negatively regulates responsiveness of J774 macrophage-like cells to LPS by down regulating the cell surface expression of LPS receptors.

作者信息

Józefowski Szczepan, Śróttek Małgorzata

机构信息

Department of Immunology, Jagiellonian University Medical College, Czysta Street 18, 31-121 Kraków, Poland.

Department of Immunology, Jagiellonian University Medical College, Czysta Street 18, 31-121 Kraków, Poland.

出版信息

Cell Immunol. 2017 Feb;312:42-50. doi: 10.1016/j.cellimm.2016.11.008. Epub 2016 Nov 23.

DOI:10.1016/j.cellimm.2016.11.008
PMID:27908440
Abstract

Acting through CD14 and TLR4/MD-2, lipopolysaccharide (LPS) triggers strong pro-inflammatory activation of macrophages, which, if not appropriately controlled, may lead to lethal septic shock. Therefore, numerous mechanisms of negative regulation of responses to LPS exist, but whether they include down-regulation of LPS receptors is not clear. We have found that in J774 cells, the clathrin-dependent endocytic pathway enables activation of TRIF-dependent TLR4 signaling within endosomes, but is not associated with the down-regulation of TLR4 or CD14 surface expression. In contrast, lipid raft-dependent endocytosis negatively regulates the basal cell surface expression of LPS receptors and, consequently, responsiveness to LPS. Together with observations that treatments, known to selectively disrupt lipid rafts, do not inhibit LPS-stimulated cytokine production, our results suggest that lipid rafts may serve as sites in which LPS receptors are sorted for endocytosis, rather than being platforms for the assembly of TLR4-centered signaling complexes, as suggested previously.

摘要

脂多糖(LPS)通过CD14和TLR4/MD-2发挥作用,触发巨噬细胞强烈的促炎激活,若这种激活未得到适当控制,可能导致致命的脓毒症休克。因此,存在多种对LPS反应进行负调节的机制,但它们是否包括LPS受体的下调尚不清楚。我们发现,在J774细胞中,网格蛋白依赖性内吞途径可在内体中激活TRIF依赖性TLR4信号传导,但与TLR4或CD14表面表达的下调无关。相反,脂筏依赖性内吞作用对LPS受体的基础细胞表面表达起负调节作用,从而影响对LPS的反应性。结合已知能选择性破坏脂筏的处理不会抑制LPS刺激的细胞因子产生这一观察结果,我们的结果表明,脂筏可能是LPS受体被分选用于内吞的位点,而不是如先前所认为的以TLR4为中心的信号复合物组装平台。

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