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干扰素-γ 通过 PI3K/AKT 通路上调人单核细胞上的 Δ42PD1 表达。

Interferon-γ upregulates Δ42PD1 expression on human monocytes via the PI3K/AKT pathway.

机构信息

Department of Infectious Diseases, the Third Affiliated Hospital of Sun Yat-sen University, Guangzhou, Guangdong, China; HKU-AIDS Institute Shenzhen Research Laboratory, Shenzhen Key Laboratory of Infection and Immunity, Guangdong Key Laboratory of Emerging Infectious Diseases, Shenzhen Third People's Hospital, Shenzhen, China.

HKU-AIDS Institute Shenzhen Research Laboratory, Shenzhen Key Laboratory of Infection and Immunity, Guangdong Key Laboratory of Emerging Infectious Diseases, Shenzhen Third People's Hospital, Shenzhen, China.

出版信息

Immunobiology. 2019 May;224(3):388-396. doi: 10.1016/j.imbio.2019.02.009. Epub 2019 Feb 21.

Abstract

BACKGROUND

We recently identified a novel alternatively spliced isoform of human programmed cell death 1 (PD-1), named Δ42PD1, which contains a 42-base-pair in-frame deletion compared with the full-length PD-1. Δ42PD1 is likely constitutively expressed on human monocytes and down-regulated in patients infected with human immunodeficiency virus type 1 (HIV-1). The mechanism underlying the regulation of Δ42PD-1 expression in monocytes remains unknown.

METHODS

By flow cytometry, we investigated the effect of Interferon-gamma (INF-γ) on the expression of Δ42PD1 in primary human monocytes as well as monocytic cell lines THP-1 and U937 cells. In addition, signaling pathway inhibitors and Δ42PD1-specific blocking antibody were used to explore the pathway involved in INF-γ-induced Δ42PD1 upregulation, and to elucidate the relationship between Δ42PD1 and TNF-α or IL-6 production by INF-γ primed monocytes in response to pre-fixed E. coli. Furthermore, we assessed T-cell proliferation, activation and cytokine production as enriched CD4 T cells were co-cultured with THP-1 or U937 cells, with or without Δ42PD1-blocking antibody.

RESULTS

Treatment of human peripheral blood mononuclear cells (PBMCs) with IFN-γ resulted in an approximately 4-fold increase in the expression of Δ42PD1 on monocytes. Similarly, IFN-γ upregulates Δ42PD1 expression on human monocytic cell lines THP-1 and U937, in a time- and dose-dependent manner. IFN-γ-induced Δ42PD1 upregulation was abolished by JAK inhibitors Ruxolitinib and Tasocitinib, PI3K inhibitor LY294002, and AKT inhibitor MK-2206, respectively, but not by STAT1 inhibitor and MAPK signaling pathway inhibitors. JAK, PI3K-AKT, and MAPK signaling inhibitors abolished effectively the production of TNF-α and IL-6 in INF-γ-primed monocytes in response to pre-fixed E. coli. In contrast, Δ42PD1-specific blocking antibody did not affect the IFN-γ-induced priming effect. Furthermore, the MFI ratio of Δ42PD1 to full-length PD-1 (PD-1 Δ/F ratio) was significantly and positively correlated with TNF-α (P =  0.0289, r = 0.6038) produced by circulating CD14 monocytes in response to pre-fixed E. coli. Notably, Δ42PD1 blockage significantly inhibited CD4 T-cells proliferation and cytokine production in the co-culture conditions.

CONCLUSIONS

We demonstrated that IFN-γ increases Δ42PD1 expression on human monocytes via activating the PI3K/AKT signaling pathway downstream of JAKs, and that the PD-1 Δ/F ratio is a potential biomarker to predict the functional state of monocytes. Notably, we revealed the Δ42PD1 play a role in T-cell regulation, providing a novel potential approach to manipulate adaptive immune response.

摘要

背景

我们最近鉴定出一种新型人程序性细胞死亡 1(PD-1)的剪接异构体,命名为 Δ42PD1,与全长 PD-1 相比,它含有 42 个碱基对的框内缺失。Δ42PD1 可能在人单核细胞中持续表达,并在感染人类免疫缺陷病毒 1(HIV-1)的患者中下调。调节单核细胞中 Δ42PD-1 表达的机制尚不清楚。

方法

通过流式细胞术,我们研究了干扰素-γ(INF-γ)对原代人单核细胞中 Δ42PD1 表达的影响,以及单核细胞系 THP-1 和 U937 细胞。此外,使用信号通路抑制剂和 Δ42PD1 特异性阻断抗体来探讨 INF-γ诱导 Δ42PD1 上调所涉及的途径,并阐明 Δ42PD1 与 TNF-α或 IL-6 产生之间的关系,以响应预固定的 E.coli。此外,我们评估了 T 细胞增殖、活化和细胞因子产生,因为富含 CD4 T 细胞与 THP-1 或 U937 细胞共培养,同时或不使用 Δ42PD1 阻断抗体。

结果

IFN-γ处理人外周血单核细胞(PBMCs)可使单核细胞上 Δ42PD1 的表达增加约 4 倍。同样,IFN-γ以时间和剂量依赖的方式上调人单核细胞系 THP-1 和 U937 上的 Δ42PD1 表达。IFN-γ 诱导的 Δ42PD1 上调分别被 Jak 抑制剂 Ruxolitinib 和 Tasocitinib、PI3K 抑制剂 LY294002 和 AKT 抑制剂 MK-2206 阻断,但不被 STAT1 抑制剂和 MAPK 信号通路抑制剂阻断。Jak、PI3K-AKT 和 MAPK 信号通路抑制剂有效地阻断了预固定 E.coli 刺激 INF-γ 预刺激单核细胞产生的 TNF-α和 IL-6。相比之下,Δ42PD1 特异性阻断抗体不影响 IFN-γ 诱导的启动效应。此外,Δ42PD1 与全长 PD-1(PD-1 Δ/F 比)的荧光强度比值与循环 CD14 单核细胞响应预固定 E.coli 产生的 TNF-α呈显著正相关(P = 0.0289,r = 0.6038)。值得注意的是,Δ42PD1 阻断显著抑制共培养条件下 CD4 T 细胞的增殖和细胞因子产生。

结论

我们证明 IFN-γ 通过激活 JAK 下游的 PI3K/AKT 信号通路增加人单核细胞上的 Δ42PD1 表达,并且 PD-1 Δ/F 比值是预测单核细胞功能状态的潜在生物标志物。值得注意的是,我们揭示了 Δ42PD1 在 T 细胞调节中的作用,为操纵适应性免疫反应提供了一种新的潜在方法。

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