The peroxisome proliferator activated receptor δ is required for the differentiation of THP-1 monocytic cells by phorbol ester.

Nuclear receptor Pub Date : 2003-12-11 eCollection Date: 2003-01-01 DOI:10.1186/1478-1336-1-9
Helen Vosper, Guennadi A Khoudoli, Colin Na Palmer
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引用次数: 24

Abstract

Background: PPARδ (NR1C2) promotes lipid accumulation in human macrophages in vitro and has been implicated in the response of macrophages to vLDL. We have investigated the role of PPARδ in PMA-stimulated macrophage differentiation. The THP-1 monocytic cell line which displays macrophage like differentiation in response to phorbol esters was used as a model system. We manipulated the response to PMA using a potent synthetic agonist of PPARδ , compound F. THP-1 sub-lines that either over-expressed PPARδ protein, or expressed PPARδ anti-sense RNA were generated. We then explored the effects of these genetic modulations on the differentiation process.

Results: The PPARδ agonist, compound F, stimulated differentiation in the presence of sub-nanomolar concentrations of phorbol ester. Several markers of differentiation were induced by compound F in a synergistic fashion with phorbol ester, including CD68 and IL8. Over-expression of PPARδ also sensitised THP-1 cells to phorbol ester and correspondingly, inhibition of PPARδ by anti-sense RNA completely abolished this response.

Conclusions: These data collectively demonstrate that PPARδ plays a fundamental role in mediating a subset of cellular effects of phorbol ester and supports observations from mouse knockout models that PPARδ is involved in macrophage-mediated inflammatory responses.

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过氧化物酶体增殖体激活受体δ是THP-1单核细胞通过磷酯分化所必需的。
背景:PPARδ (NR1C2)在体外促进人巨噬细胞的脂质积累,并与巨噬细胞对vLDL的反应有关。我们研究了PPARδ在pma刺激的巨噬细胞分化中的作用。以THP-1单核细胞系作为模型系统,该细胞系对佛波酯反应表现出巨噬细胞样分化。我们使用一种强效的合成的PPARδ激动剂,即化合物f来操纵对PMA的反应,生成过表达PPARδ蛋白或表达PPARδ反义RNA的THP-1亚系。然后,我们探讨了这些遗传调节对分化过程的影响。结果:PPARδ激动剂化合物F在亚纳摩尔浓度的磷酯存在下刺激分化。化合物F与佛波酯协同诱导多种分化标志物,包括CD68和IL8。过表达PPARδ也使THP-1细胞对磷酸酯敏感,相应地,反义RNA抑制PPARδ完全消除了这种反应。结论:这些数据共同表明,PPARδ在介导phorbol酯的一部分细胞效应中起着重要作用,并支持了小鼠敲除模型中PPARδ参与巨噬细胞介导的炎症反应的观察结果。
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