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FcγR交联介导单核细胞中NF-κB活化、抗原呈递能力降低和IL-12产生减少,而不影响髓样树突状细胞的发育。

FcgammaR cross-linking mediates NF-kappaB activation, reduced antigen presentation capacity, and decreased IL-12 production in monocytes without modulation of myeloid dendritic cell development.

作者信息

Drechsler Yvonne, Chavan Sangeeta, Catalano Donna, Mandrekar Pranoti, Szabo Gyongyi

机构信息

Department of Medicine, University of Massachusetts Medical Center, Worcester, MA 01605, USA.

出版信息

J Leukoc Biol. 2002 Oct;72(4):657-67.

Abstract

Stimulation of monocytes (MO) through receptors for the Fc region of immunoglobulin G (FcgammaR) activates a variety of responses, including phagocytosis, antibody (Ab)-dependent cellular cytotoxicity, and production of cytokines. We previously reported that the MO subpopulation that expresses FcgammaR in high density produces high levels of tumor necrosis factor alpha (TNF-alpha) compared with FcgammaR-negative MO. Here, we show that cross-linking MO via FcgammaRI or FcgammaRII but not via FcgammaRIII activates nuclear regulatory factor-kappaB (NF-kappaB), a transcription factor involved in regulation of TNF-alpha. NF-kappaB activation peaked at 2.75 h after FcgammaRI cross-linking, involved p65 and p50 (heterodimer) and not c-rel-containing NF-kappaB complexes, and was mediated via IkappaB degradation. Cross-linking FcgammaRI, -II, as well as -III inhibited interleukin (IL)-12 (p70) production in MO, whether stimulated with Staphylococcal enterotoxin B (P<0.02) or lipopolysaccharide (P<0.02). Inhibition of IL-12 by FcgammaR cross-linking was not mediated by TNF-alpha, as the presence of an anti-TNF-alpha Ab could not restore the reduced IL-12 production. Decreased IL-12 production correlated with reduced antigen presentation capacity (P<0.01) in the FcgammaR-cross-linked MO. Blood MO can give rise to myeloid dendritic cells (DC). FcgammaR cross-linking did not modulate in vitro maturation of MO to fully functional myeloid DC. Allostimulatory capacity in mixed leukocyte reaction and DC marker expression (CDla, CD80, CD86) was not different between control and FcgammaRI cross-linked DC. These results suggest that signals mediated via FcgammaRI, -II, and -III have overlapping yet distinct effects on MO, which are likely to be involved in the fine-tuning of the immune responses to various stimuli.

摘要

通过免疫球蛋白G(FcγR)的Fc区域受体刺激单核细胞(MO)可激活多种反应,包括吞噬作用、抗体(Ab)依赖性细胞毒性和细胞因子的产生。我们先前报道,与FcγR阴性的MO相比,高密度表达FcγR的MO亚群产生高水平的肿瘤坏死因子α(TNF-α)。在此,我们表明通过FcγRI或FcγRII而非FcγRIII交联MO可激活核调节因子-κB(NF-κB),这是一种参与TNF-α调节的转录因子。FcγRI交联后2.75小时,NF-κB激活达到峰值,涉及p65和p50(异二聚体),而非含c-rel的NF-κB复合物,且通过IκB降解介导。交联FcγRI、-II以及-III可抑制MO中白细胞介素(IL)-12(p70)的产生,无论用葡萄球菌肠毒素B(P<0.02)还是脂多糖(P<0.02)刺激。FcγR交联对IL-12的抑制作用不是由TNF-α介导的,因为抗TNF-α抗体的存在不能恢复降低的IL-12产生。在FcγR交联的MO中,IL-12产生减少与抗原呈递能力降低相关(P<0.01)。血液中的MO可分化为髓样树突状细胞(DC)。FcγR交联并未调节MO在体外向功能完全的髓样DC的成熟。对照DC和FcγRI交联的DC在混合淋巴细胞反应中的同种异体刺激能力以及DC标志物表达(CD1a、CD80、CD86)并无差异。这些结果表明,通过FcγRI、-II和-III介导的信号对MO具有重叠但又不同的影响,这可能参与了对各种刺激的免疫反应的精细调节。

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