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Fc gamma receptors are expressed in the developing rat brain and activate downstream signaling molecules upon cross-linking with immune complex

机译:Fcγ受体在发育中的大鼠大脑中表达,并在与免疫复合物交联后激活下游信号分子

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BackgroundExposure of the developing brain to immune mediators, including antibodies, is postulated to increase risk for neurodevelopmental disorders and neurodegenerative disease. It has been suggested that immunoglobulin G-immune complexes (IgG-IC) activate Fc gamma receptors (FcγR) expressed on neurons to modify signaling events in these cells. However, testing this hypothesis is hindered by a paucity of data regarding neuronal FcγR expression and function. MethodsFcγR transcript expression in the hippocampus, cortex, and cerebellum of neonatal male and female rats was investigated ex vivo and in mixed cultures of primary hippocampal and cortical neurons and astrocytes using quantitative PCR analyses. Expression at the protein level in mixed cultures of primary hippocampal and cortical neurons and astrocytes was determined by immunocytochemistry, western blotting, proteotype analysis, and flow cytometry. The functionality of these receptors was assessed by measuring changes in intracellular calcium levels, Erk phosphorylation, and IgG internalization following stimulation with IgG-immune complexes. Results FcgrIa , FcgrIIa , FcgrIIb , FcgrIIIa , and Fcgrt transcripts were detectable in the cortex, hippocampus, and cerebellum at postnatal days 1 and 7. These transcripts were also present in primary hippocampal and cortical cell cultures, where their expression was modulated by IFNγ. Expression of FcγRIa, FcγRIIb, and FcγRIIIa, but not FcγRIIa or FcRn proteins, was confirmed in cultured hippocampal and cortical neurons and astrocytes at the single cell level. A subpopulation of these cells co-expressed the activating FcγRIa and the inhibitory FcγRIIb. Functional analyses demonstrated that exposure of hippocampal and cortical cell cultures to IgG-IC increases intracellular calcium and Erk phosphorylation and triggers FcγR-mediated internalization of IgG. ConclusionsOur data demonstrate that developing neurons and astrocytes in the hippocampus and the cortex express signaling competent FcγR. These findings suggest that IgG antibodies may influence normal neurodevelopment or function?via direct interactions with FcγR on non-immune cells in the brain.
机译:背景发育中的大脑被暴露于免疫介体(包括抗体)会增加神经发育障碍和神经退行性疾病的风险。已经提出免疫球蛋白G-免疫复合物(IgG-IC)激活在神经元上表达的Fcγ受体(FcγR),以修饰这些细胞中的信号传导事件。然而,缺乏关于神经元FcγR表达和功能的数据阻碍了对该假设的检验。方法采用定量PCR分析方法,对新生雄性和雌性大鼠海马,皮层和小脑中FcγR转录本的表达进行离体研究,并在原代海马和皮层神经元以及星形胶质细胞的混合培养物中进行研究。通过免疫细胞化学,蛋白质印迹分析,蛋白型分析和流式细胞术确定原代海马和皮层神经元与星形胶质细胞混合培养物中蛋白质水平的表达。这些受体的功能通过在用IgG免疫复合物刺激后测量细胞内钙水平,Erk磷酸化和IgG内在化的变化来评估。结果在出生后第1和第7天,在皮质,海马和小脑中可检测到FcgrIa,FcgrIIa,FcgrIIb,FcgrIIIa和Fcgrt转录本。这些转录本也存在于原代海马和皮质细胞培养物中,其表达受IFNγ调节。在培养的海马和皮层神经元以及星形胶质细胞中,在单细胞水平上证实了FcγRIa,FcγRIIb和FcγRIIIa的表达,但没有FcγRIIa或FcRn蛋白的表达。这些细胞的亚群共表达活化的FcγRIa和抑制性FcγRIIb。功能分析表明,海马和皮层细胞培养物暴露于IgG-IC会增加细胞内钙和Erk磷酸化,并触发FcγR介导的IgG内在化。结论我们的数据表明,海马和皮层中发育中的神经元和星形胶质细胞表达信号感受态FcγR。这些发现表明,IgG抗体可能通过与FcγR在大脑中非免疫细胞上的直接相互作用而影响正常的神经发育或功能。

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