对单核细胞向巨噬细胞分化过程中神经元引导线索表达调控的全面分析揭示了 RNA 结合蛋白 quaking 对 semaphorin7A 的转录后调控。

IF 2.8 4区 医学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Innate Immunity Pub Date : 2021-02-01 Epub Date: 2020-11-26 DOI:10.1177/1753425920966645
Huayu Zhang, Jurriën Prins, Dianne Vreeken, Barend W Florijn, Ruben G de Bruin, Oscar Rj van Hengel, Mieke F van Essen, Jacques Mgj Duijs, Hilde Van Esch, Eric P van der Veer, Anton Jan van Zonneveld, Janine M van Gils
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引用次数: 0

摘要

在炎症细胞因子和趋化因子的作用下,单核细胞分化为巨噬细胞。目前还没有关于单核细胞向巨噬细胞分化过程中神经元引导线索(NGC)配体和受体基因表达调控的全面分析。我们使用芯片或 RNA 测序方法对人类原代 PBMCs/PBMC 衍生巨噬细胞和 THP-1 细胞/THP-1-巨噬细胞进行了转录组分析。通路分析表明,轴突导向通路在单核细胞分化过程中受到显著调控。我们确认了受到持续调控的 NGC 配体和受体,包括 SEMA4D、SEMA7A、NRP1、NRP2、PLXNA1 和 PLXNA3。 我们使用一名 QKI 单倍表达不足患者及其健康兄弟姐妹的单核细胞和巨噬细胞,研究了 RNA 结合蛋白 quaking (QKI) 参与 NGC 表达调控的情况。结果显示 SEMA7A 的表达与 QKI 的表达呈正相关。对NGC的3'UTR进行的硅学分析表明,QKI与近端microRNA靶点的竞争性结合是QKI依赖性调控SEMA7A的机制。RNA 免疫沉淀证实了 QKI 与 SEMA7A 的 3'UTR 的相互作用。SEMA7A 的缺失导致单核细胞向更具抗炎性的巨噬细胞分化。综上所述,轴突导向通路在单核细胞向巨噬细胞分化的过程中受到调控,而这种调控与巨噬细胞的特殊作用所需的功能适应是一致的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Comprehensive analysis of neuronal guidance cue expression regulation during monocyte-to-macrophage differentiation reveals post-transcriptional regulation of semaphorin7A by the RNA-binding protein quaking.

Comprehensive analysis of neuronal guidance cue expression regulation during monocyte-to-macrophage differentiation reveals post-transcriptional regulation of semaphorin7A by the RNA-binding protein quaking.

Comprehensive analysis of neuronal guidance cue expression regulation during monocyte-to-macrophage differentiation reveals post-transcriptional regulation of semaphorin7A by the RNA-binding protein quaking.

Comprehensive analysis of neuronal guidance cue expression regulation during monocyte-to-macrophage differentiation reveals post-transcriptional regulation of semaphorin7A by the RNA-binding protein quaking.

In response to inflammatory cytokines and chemokines, monocytes differentiate into macrophages. Comprehensive analysis of gene expression regulation of neuronal guidance cue (NGC) ligands and receptors in the monocyte-to-macrophage differentiation process is not available yet. We performed transcriptome profiling in both human primary PBMCs/PBMC-derived macrophages and THP-1 cells/THP-1-macrophages using microarray or RNA sequencing methods. Pathway analysis showed that the axonal guidance pathway is significantly regulated upon monocyte differentiation. We confirmed NGC ligands and receptors which were consistently regulated, including SEMA4D, SEMA7A, NRP1, NRP2, PLXNA1 and PLXNA3. The involvement of RNA-binding protein quaking (QKI) in the regulation of NGC expression was investigated using monocytes and macrophages from a QKI haplo-insufficient patient and her healthy sibling. This revealed a positive correlation of SEMA7A expression with QKI expression. In silico analysis of 3'UTRs of NGCs proposed the competitive binding of QKI to proximal microRNA targeting sites as the mechanism of QKI-dependent regulation of SEMA7A. RNA immunoprecipitation confirmed an interaction of QKI with the 3'UTR of SEMA7A. Loss of SEMA7A resulted in monocyte differentiation towards a more anti-inflammatory macrophage. Taken together, the axonal guidance pathway is regulated during monocyte-to-macrophage differentiation, and the regulation is in line with the necessary functional adaption for the specialised role of macrophages.

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来源期刊
Innate Immunity
Innate Immunity 生物-免疫学
CiteScore
7.20
自引率
0.00%
发文量
20
审稿时长
6-12 weeks
期刊介绍: Innate Immunity is a highly ranked, peer-reviewed scholarly journal and is the official journal of the International Endotoxin & Innate Immunity Society (IEIIS). The journal welcomes manuscripts from researchers actively working on all aspects of innate immunity including biologically active bacterial, viral, fungal, parasitic, and plant components, as well as relevant cells, their receptors, signaling pathways, and induced mediators. The aim of the Journal is to provide a single, interdisciplinary forum for the dissemination of new information on innate immunity in humans, animals, and plants to researchers. The Journal creates a vehicle for the publication of articles encompassing all areas of research, basic, applied, and clinical. The subject areas of interest include, but are not limited to, research in biochemistry, biophysics, cell biology, chemistry, clinical medicine, immunology, infectious disease, microbiology, molecular biology, and pharmacology.
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