首页> 美国卫生研究院文献>other >GDF15 Regulates Malat-1 Circular RNA and Inactivates NFκB Signaling Leading to Immune Tolerogenic DCs for Preventing Alloimmune Rejection in Heart Transplantation
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GDF15 Regulates Malat-1 Circular RNA and Inactivates NFκB Signaling Leading to Immune Tolerogenic DCs for Preventing Alloimmune Rejection in Heart Transplantation

机译:GDF15调节Malat-1环状RNA并失活NFκB信号传导导致免疫耐受DC防止心脏移植中的同种免疫排斥反应。

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摘要

Recombinant human growth differentiation factor 15 (rhGDF15) affects dendritic cell (DC) maturation. However, whether GDF15 is expressed in DCs and its roles and signaling in DCs remain largely unknown. It is unclear whether GDF15-DCs can induce immune tolerance in heart transplantation (HT). This study aims to understand the impact of endogenous GDF15 on DC's development, function, underlying molecular mechanism including circular RNA (circRNA). This study will also explore GDF15-DC-mediated immune modulation in HT. Bone marrow (BM) derived DCs were cultured and treated to up- or down regulate GDF15 expression. Phenotype and function of DCs were detected. Expression of genes and circRNAs was determined by qRT-PCR. The signaling pathways activated by GDF15 were examined. The impact of GDF15 treated DCs on preventing allograft immune rejection was assessed in a MHC full mismatch mouse HT model. Our results showed that GDF15 was expressed in DCs. Knockout of GDF15 promoted DC maturation, enhanced immune responsive functions, up-regulated malat-1 circular RNA (circ_Malat 1), and activated the nuclear factor kappa B (NFκB) pathway. Overexpression of GDF15 in DCs increased immunosuppressive/inhibitory molecules, enhanced DCs to induce T cell exhaustion, and promoted Treg generation through IDO signaling. GDF15 utilized transforming growth factor (TGF) β receptors I and II, not GFAL. Administration of GDF15 treated DCs prevented allograft rejection and induced immune tolerance in transplantation. In conclusion, GDF15 induces tolerogenic DCs (Tol-DCs) through inhibition of circ_Malat-1 and the NFκB signaling pathway and up-regulation of IDO. GDF15-DCs can prevent alloimmune rejection in HT.
机译:重组人类生长分化因子15(rhGDF15)影响树突状细胞(DC)的成熟。但是,是否在DC中表达GDF15及其在DC中的作用和信号传递仍然很大程度上未知。尚不清楚GDF15-DC是否可以在心脏移植(HT)中诱导免疫耐受。这项研究旨在了解内源性GDF15对DC发育,功能以及包括环状RNA(circRNA)在内的潜在分子机制的影响。这项研究还将探讨GDF15-DC介导的HT免疫调节。培养骨髓(BM)源的DC,并对其进行处理以上调或下调GDF15的表达。检测DC的表型和功能。通过qRT-PCR确定基因和circRNA的表达。检查了由GDF15激活的信号通路。在MHC完全错配小鼠HT模型中评估了GDF15处理的DC对防止同种异体免疫排斥的影响。我们的结果表明,GDF15在DC中表达。 GDF15的敲除促进DC成熟,增强免疫应答功能,上调malat-1环状RNA(circ_Malat 1),并激活核因子kappa B(NFκB)途径。 DC中GDF15的过表达增加了免疫抑制/抑制分子,增强了DC以诱导T细胞衰竭,并通过IDO信号促进了Treg的产生。 GDF15利用转化生长因子(TGF)β受体I和II,而不是GFAL。给予GDF15处理的DC可以防止同种异体移植排斥,并诱导移植过程中的免疫耐受。总之,GDF15通过抑制circ_Malat-1和NFκB信号通路以及上调IDO诱导致耐受性DC(Tol-DC)。 GDF15-DC可以预防HT中的同种免疫排斥。

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