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IVIg 在活化 B 细胞中的自发内化。

Spontaneous internalization of IVIg in activated B cells.

机构信息

Department of Research and Development, Héma-Québec, Québec (Qc), Canada.

出版信息

Immunol Lett. 2009 May 14;124(1):18-26. doi: 10.1016/j.imlet.2009.03.012. Epub 2009 Apr 5.

Abstract

Previous work from our laboratory showed that IVIg could directly influence the fate of human B cells by inducing their differentiation. The initial goal of the present study was to identify the cell surface molecules recognized by IVIg on human B cells. Purified resting and CD40-activated human B cells were incubated with IVIg and lysed prior to immunoprecipitation. The immunoprecipitated proteins were identified by mass spectrometry (LC-MS). This analysis revealed that BCR, as well as other cell surface receptors or membrane associated proteins were the main targets of IVIg. Surprisingly, intracellular proteins were also found in the immunoprecipitates, suggesting that IVIg could penetrate inside living cells and interact with intracellular targets. We have further studied this unexpected phenomenon and obtained evidence indicating that a significant amount of IVIg was spontaneously internalized inside living cells. We showed that IVIg internalization could occur in a BCR- and FcgammaR-independent pathway. Furthermore, spontaneous IVIg internalization was also observed in whole blood incubated with therapeutic concentrations of IVIg, even in presence of the high endogenous IgG concentration. These observations first suggest that spontaneous internalization can occur in IVIg-treated patients and also that some of the observed alterations in the physiology of IVIg-treated cells may not be only dependent on extracellular interactions of IVIg with cell surface receptors or soluble plasma proteins but may also involve intracellular interactions.

摘要

先前本实验室的工作表明,IVIg 可通过诱导人类 B 细胞分化而直接影响其命运。本研究的最初目标是确定 IVIg 在人类 B 细胞上识别的细胞表面分子。将纯化的静止和 CD40 激活的人 B 细胞与 IVIg 孵育,然后在免疫沉淀之前裂解。通过质谱(LC-MS)鉴定免疫沉淀的蛋白质。该分析表明,BCR 以及其他细胞表面受体或膜相关蛋白是 IVIg 的主要靶标。令人惊讶的是,免疫沉淀物中还发现了细胞内蛋白,表明 IVIg 可以穿透活细胞并与细胞内靶标相互作用。我们进一步研究了这一意外现象,并获得了表明大量 IVIg 自发内化到活细胞内的证据。我们表明,IVIg 的内化可以通过 BCR 和 FcγR 独立途径发生。此外,在含有治疗浓度 IVIg 的全血中也观察到自发的 IVIg 内化,即使存在高内源性 IgG 浓度也是如此。这些观察结果首先表明,自发内化可能发生在接受 IVIg 治疗的患者中,并且在接受 IVIg 治疗的细胞中观察到的一些生理变化可能不仅取决于 IVIg 与细胞表面受体或可溶性血浆蛋白的细胞外相互作用,还可能涉及细胞内相互作用。

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