OBJECTIVE: This study aimed to evaluate the specific roles of polyinosinic:polycytidylic acid (polyI:C) in macrophage chemotaxis and reveal the potential regulatory mechanisms related to chemokine receptor 5 (CCR5). MATERIALS AND METHODS: In this experimental study, THP-1-derived macrophages (THP1-MÏs) induced from THP- 1 monocytes were treated with 25 μg/mL polyI:C. Toll-like receptor 3 (TLR3), Jumonji domain-containing protein (JMJD)1A, and JMJD1C small interfering RNA (siRNAs) were transfected into THP1-MÏs. Quantitative real-time reverse transcriptase polymerase chain reaction (qRT-PCR) was used to detect the expression levels of TLR3, CCR5, 23 Jumonji C domain-containing histone demethylase family members, JMJD1A, and JMJD1C in THP1-MÏs with different siRNAs transfections. Western blot was performed to detect JMJD1A, JMJD1C, H3K9me2, and H3K9me3 expressions. A transwell migration assay was conducted to detect THP1-MÏ chemotaxis toward chemokine ligand 3 (CCL3). A chromatin immunoprecipitation (ChIP) assay was performed to detect H3K9me2-CCR5 complexes in THP1- MÏs. RESULTS: PolyI:C significantly upregulated CCR5 in THP1-MÏs and promoted chemotaxis toward CCL3 (P<0.05); these effects were significantly inhibited by TLR3 siRNA (P<0.01). JMJD1A and JMJD1C expression was significantly upregulated in polyI:C-stimulated THP1-MÏs, while only JMJD1A siRNA decreased CCR5 expression (P<0.05). JMJD1A siRNA significantly increased H3K9me2 expression in THP1-MÏs but not in polyI:C-stimulated THP1-MÏs. The ChIP result revealed that polyI:C significantly downregulated H3K9me2 in the promoter region of CCR5 in THP1- MÏs. CONCLUSION: PolyI:C can enhance THP1-MÏ chemotaxis toward CCL3 regulated by TLR3/JMJD1A signalling and activate CCR5 expression by reducing H3K9me2 in the promoter region of CCR5.
PolyI:C Upregulated CCR5 and Promoted THP-1-Derived Macrophage Chemotaxis via TLR3/JMJD1A Signalling.
PolyI:C 通过 TLR3/JMJD1A 信号通路上调 CCR5 并促进 THP-1 衍生巨噬细胞的趋化性
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作者:Yu Xiaoxiao, Wang Huayang, Shao Hongjia, Zhang Cuijuan, Ju Xiuli, Yang Jie
| 期刊: | Cell Journal | 影响因子: | 1.700 |
| 时间: | 2020 | 起止号: | 2020 Oct;22(3):325-333 |
| doi: | 10.22074/cellj.2020.6713 | 研究方向: | 信号转导、细胞生物学 |
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