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Mesenchymal stem cells promote the sustained expression of CD69 on activated T lymphocytes: roles of canonical and non-canonical NF-κB signalling

机译:间充质干细胞促进活化T淋巴细胞上CD69的持续表达:规范和非规范NF-κB信号传导的作用

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摘要

Mesenchymal stem cells (MSCs) are known to induce the conversion of activated T cells into regulatory T cells in vitro. The marker CD69 is a target of canonical nuclear factor kappa-B (NF-κB) signalling and is transiently expressed upon activation; however, stable CD69 expression defines cells with immunoregulatory properties. Given its enormous therapeutic potential, we explored the molecular mechanisms underlying the induction of regulatory cells by MSCs. Peripheral blood CD3+ T cells were activated and cultured in the presence or absence of MSCs. CD4+ cell mRNA expression was then characterized by microarray analysis. The drug BAY11-7082 (BAY) and a siRNA against v-rel reticuloendotheliosis viral oncogene homolog B (RELB) were used to explore the differential roles of canonical and non-canonical NF-κB signalling, respectively. Flow cytometry and real-time PCR were used for analyses. Genes with immunoregulatory functions, CD69 and non-canonical NF-κB subunits (RELB and NFKB2) were all expressed at higher levels in lymphocytes co-cultured with MSCs. The frequency of CD69+ cells among lymphocytes cultured alone progressively decreased after activation. In contrast, the frequency of CD69+ cells increased significantly following activation in lymphocytes co-cultured with MSCs. Inhibition of canonical NF-κB signalling by BAY immediately following activation blocked the induction of CD69; however, inhibition of canonical NF-κB signalling on the third day further induced the expression of CD69. Furthermore, late expression of CD69 was inhibited by RELB siRNA. These results indicate that the canonical NF-κB pathway controls the early expression of CD69 after activation; however, in an immunoregulatory context, late and sustained CD69 expression is promoted by the non-canonical pathway and is inhibited by canonical NF-κB signalling.
机译:已知间充质干细胞(MSC)在体外诱导活化的T细胞转化为调节性T细胞。标记CD69是规范核因子Kappa-B(NF-κB)信号转导的靶标,并在激活后瞬时表达。然而,稳定的CD69表达定义了具有免疫调节特性的细胞。鉴于其巨大的治疗潜力,我们探索了由MSC诱导调控细胞的分子机制。在有或没有MSC的情况下,激活并培养外周血CD3 + T细胞。然后通过微阵列分析表征CD4 + 细胞的mRNA表达。使用BAY11-7082(BAY)药物和针对v-rel网状内皮病病毒癌基因同源物B(RELB)的siRNA来分别探讨经典和非经典NF-κB信号传导的不同作用。使用流式细胞仪和实时PCR进行分析。具有免疫调节功能的基因,CD69和非规范性NF-κB亚基(RELB和NFKB2)均在与MSC共培养的淋巴细胞中以较高的水平表达。激活后,单独培养的淋巴细胞中CD69 + 细胞的频率逐渐降低。相反,与MSC共培养的淋巴细胞被激活后,CD69 + 细胞的频率显着增加。激活后立即被BAY抑制经典的NF-κB信号传导阻断了CD69的诱导。然而,在第三天抑制经典的NF-κB信号转导进一步诱导了CD69的表达。此外,RELB siRNA抑制了CD69的晚期表达。这些结果表明典型的NF-κB通路控制激活后CD69的早期表达。然而,在免疫调节的情况下,CD69的晚期和持续表达通过非经典途径促进,并被经典NF-κB信号传导抑制。

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