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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Gap junction-mediated intercellular communication between dendritic cells (DCs) is required for effective activation of DCs.
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Gap junction-mediated intercellular communication between dendritic cells (DCs) is required for effective activation of DCs.

机译:树突状细胞(DC)之间的间隙连接介导的细胞间通讯是有效激活DC所必需的。

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摘要

Gap junctions, formed by members of the connexin (Cx) family, are intercellular channels allowing direct exchange of signaling molecules. Gap junction-mediated intercellular communication (GJIC) is a widespread mechanism for homeostasis in organs. GJIC in the immune system is not yet fully understood. Although dendritic cells (DC) reportedly form cell-to-cell contact between DCs in nonlymphoid and lymphoid organs, GJIC between DCs remains unknown. In this study we examined whether DCs form GJIC. XS52 and bone marrow-derived DCs (BMDCs) were tested for GJIC by counting intercellular transfer of Lucifer Yellow microinjected into a cell. Either DC became effectively dye-coupled when activated with LPS plus IFN-gamma or TNF-alpha plus IFN-gamma. LPS- plus IFN-gamma-induced dye-coupling was mediated by DC-derived TNF-alpha. In addition, CpG plus IFN-gamma induced dye-coupling in BMDCs, which was also mediated by DC-derived TNF-alpha. LPS- plus IFN-gamma-induced activation of DCs (assessed by CD40 expression) was observed when there was cell-to-cell contact and was significantly blocked by heptanol, a gap junction blocker. These results indicate that cell-to-cell contact and GJIC are required for effective DC activation. In addition, heptanol significantly inhibited the LPS- plus IFN-gamma-induced up-regulation of the other costimulatory (i.e., CD80 and CD86) and MHC class II molecules expressed by BMDCs, and it significantly reduced their allostimulatory capacity. Among Cx members, Cx43 was up-regulated in dye-coupled BMDCs, and Cx mimetic peptide, a blocker of Cx-mediated GJIC, significantly inhibited the dye-coupling and activation, suggesting the involvement of Cx43. Thus, our study provides the first evidence for GJIC between DCs, which is required for effective DC activation.
机译:由连接蛋白(Cx)家族成员形成的间隙连接是细胞间通道,可直接交换信号分子。间隙连接介导的细胞间通讯(GJIC)是器官体内稳态的广泛机制。免疫系统中的GJIC尚未完全了解。尽管据报道树突状细胞(DC)在非淋巴器官和淋巴器官中的DC之间形成细胞间接触,但DC之间的GJIC仍然未知。在这项研究中,我们检查了DC是否形成GJIC。通过计数显微注射到细胞中的路西法黄的细胞间转移,对XS52和骨髓来源的DC(BMDC)进行了GJIC测试。当用LPS加IFN-γ或TNF-alpha加IFN-γ激活时,DC都可以有效地进行染料偶联。 LPS加IFNγ诱导的染料偶联是由DC衍生的TNFα介导的。此外,CpG加IFN-γ诱导BMDC中的染料偶联,这也由DC衍生的TNF-α介导。当细胞与细胞接触时,观察到LPS加IFN-γ诱导的DC活化(通过CD40表达评估),并被庚醇(间隙连接阻滞剂)显着阻断。这些结果表明有效的DC激活需要细胞间接触和GJIC。此外,庚醇显着抑制了LPDC和IFN-γ诱导的其他共刺激分子(即CD80和CD86)和BMDC表达的II类MHC分子的上调,并且显着降低了它们的同素刺激能力。在Cx成员中,Cx43在染料偶联的BMDC中上调,而Cx模拟肽(一种Cx介导的GJIC的阻滞剂)显着抑制了染料的偶联和活化,表明Cx43的参与。因此,我们的研究为DC之间的GJIC提供了第一个证据,这是有效激活DC所必需的。

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