Le Cabec Véronique, Emorine Laurent J, Toesca Isabelle, Cougoule Céline, Maridonneau-Parini Isabelle
Institute de Pharmacologie et de Biologie Structural, CNRS UMR 5089, Toulouse, France.
J Leukoc Biol. 2005 Jun;77(6):934-43. doi: 10.1189/jlb.1204705. Epub 2005 Mar 14.
The macrophage mannose receptor (MR) appears to play an important role in the binding and phagocytosis of several human pathogens, but its phagocytic property and signaling pathways have been poorly defined. The general strategy to explore such topics is to express the protein of interest in nonphagocytic cells, but in the case of MR, there are few reports using the full-length MR cDNA. When we searched to clone de novo the human MR (hMR) cDNA, problems were encountered, and full-length hMR cDNA was only obtained after devising a complex cloning strategy. Chinese hamster ovary cells, which have a fully functional phagocytic machinery when expressing professional phagocytic receptors, were stably transfected, and cell clones expressing hMR at quantitatively comparable levels than human macrophages or J774E cells were obtained. They exhibited a functional hMR-mediated endocytic capacity of a soluble ligand but failed to ingest classical particulate ligands of MR such as zymosan, Mycobacterium kansasii, or trimannoside bovine serum albumin-coated latex beads. Transient expression of hMR in two human cell lines did not provide a phagocytic capacity either. In conclusion, we show that MR is not a professional phagocytic receptor, as it does not possess the ability to promote particle ingestion in nonphagocytic cells on its own. We propose that MR is a binding receptor, which requires a partner to trigger phagocytosis in some specialized cells such as macrophages. Our new expression vector could represent a useful tool to study the receptor and its partnership further.
巨噬细胞甘露糖受体(MR)似乎在几种人类病原体的结合和吞噬过程中发挥重要作用,但其吞噬特性和信号通路尚未完全明确。探索此类课题的一般策略是在非吞噬细胞中表达感兴趣的蛋白质,但就MR而言,使用全长MR cDNA的报道很少。当我们试图从头克隆人MR(hMR)cDNA时遇到了问题,在设计了一种复杂的克隆策略后才获得全长hMR cDNA。中国仓鼠卵巢细胞在表达专业吞噬受体时具有完整功能的吞噬机制,将其稳定转染后,获得了与人类巨噬细胞或J774E细胞表达水平在数量上相当的hMR表达细胞克隆。它们表现出功能性hMR介导的可溶性配体内吞能力,但无法摄取MR的经典颗粒性配体,如酵母聚糖、堪萨斯分枝杆菌或三甘露糖牛血清白蛋白包被的乳胶珠。在两个人类细胞系中瞬时表达hMR也未产生吞噬能力。总之,我们表明MR不是一种专业吞噬受体,因为它自身不具备在非吞噬细胞中促进颗粒摄取的能力。我们提出MR是一种结合受体,在某些特殊细胞如巨噬细胞中,它需要一个伙伴来触发吞噬作用。我们的新表达载体可能是进一步研究该受体及其伙伴关系的有用工具。