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Highly Efficient Transfection of Primary Macrophages with In Vitro Transcribed mRNA
Published on: November 9, 2019
Mmu-miR-125b overexpression suppresses NO production in activated macrophages by targeting eEF2K and CCNA2
Zhenbiao Xu1, Lianmei Zhao1, Xin Yang1
1State Key Laboratory of Medical Molecular Biology, Institute of Basic Medical Sciences, Chinese Academy of Medical Sciences & Peking Union Medical College, Beijing, 100005, China.
Background:
MicroRNAs have been shown to be important regulators of the immune response and the development of the immune system. It was reported that microRNA-125b (miR-125b) was down-regulated in macrophages challenged with endotoxin. However, little is known about the function and mechanism of action of miR-125b in macrophage activation. Macrophages use L-arginine to synthesize nitric oxide (NO) through inducible NO synthase (iNOS), and the released NO contributes to the tumoricidal activity of macrophages.
Methods:
Luciferase reporter assays were employed to validate regulation of a putative target of miR-125b. The effect of miR-125b on endogenous levels of this target were subsequently confirmed via Western blot. Quantitative reverse transcription-polymerase chain reaction (qRT-PCR) was performed to determine the expression level of miR-125b in macrophage. MTS assays were conducted to explore the impact of miR-125b overexpression on the cell viability of 4T1 cells.
Results:
Here, we demonstrate that mmu-miR-125b overexpression suppresses NO production in activated macrophages and that LPS-activated macrophages with overexpressed mmu-miR-125b promote 4T1 tumor cell proliferation in vitro and 4T1 tumor growth in vivo. CCNA2 and eEF2K are the direct and functional targets of mmu-miR-125b in macrophages; CCNA2 and eEF2K expression was knocked down, which mimicked the mmu-miR-125b overexpression phenotype.
Conclusions:
These data suggest that mmu-miR-125b decreases NO production in activated macrophages at least partially by suppressing eEF2K and CCNA2 expression.
Insights
MicroRNA-125b (miR-125b) suppresses nitric oxide (NO) production in macrophages. Overexpression of miR-125b promotes tumor cell proliferation and growth by targeting CCNA2 and eEF2K.
Area of Science:
- Immunology
- Molecular Biology
- Cancer Research
Background:
- MicroRNAs regulate immune responses and development.
- MicroRNA-125b (miR-125b) is downregulated in endotoxin-challenged macrophages.
- The function of miR-125b in macrophage activation remains largely unknown.
Purpose of the Study:
- To investigate the role and mechanism of miR-125b in macrophage activation.
- To determine the effect of miR-125b on nitric oxide (NO) production.
- To assess the impact of miR-125b on tumor cell proliferation and growth.
Main Methods:
- Luciferase reporter assays to validate miR-125b targets.
- Western blot to confirm target protein levels.
- Quantitative reverse transcription-polymerase chain reaction (qRT-PCR) for miR-125b expression.
- MTS assays to evaluate cell viability.
Main Results:
- Overexpression of miR-125b suppressed NO production in activated macrophages.
- LPS-activated macrophages with miR-125b overexpression promoted 4T1 tumor cell proliferation in vitro and tumor growth in vivo.
- CCNA2 and eEF2K were identified as direct targets of miR-125b, and their knockdown mimicked miR-125b overexpression effects.
Conclusions:
- miR-125b decreases NO production in activated macrophages.
- This decrease is mediated, at least partially, by the suppression of eEF2K and CCNA2 expression.
- miR-125b plays a role in modulating macrophage function and influencing tumor progression.
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