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Published on: January 7, 2020
Cell-surface nucleolin is involved in lipopolysaccharide internalization and signalling in alveolar macrophages
Yi Wang1, Mei Mao, Jian-cheng Xu
1*Institute of Human Respiratory Diseases, No. 2 Hospital/Third Military Medical University, Chongqing, Peoples Republic of China.
Insights
Nucleolin (C23) acts as a cell surface receptor for lipopolysaccharide (LPS) on alveolar macrophages. This interaction is crucial for LPS internalization and regulating inflammatory responses, suggesting C23 as a therapeutic target.
Area of Science:
- Immunology
- Cell Biology
Background:
- Nucleolin (C23) shuttles between cellular compartments and is implicated in inflammation and infection.
- Cell surface C23 on monocytes is known to mediate inflammatory responses to lipopolysaccharide (LPS).
Purpose of the Study:
- To investigate if C23 functions as a membrane receptor for LPS in activating alveolar macrophages (AMs).
Main Methods:
- Immunofluorescence and microscopy to detect C23 expression on AMs.
- LPS affinity columns to assess C23-LPS binding.
- siRNA to knockdown cell surface C23 and evaluate LPS internalization and downstream signaling.
Main Results:
- C23 was detected on the surface of AMs and directly binds to LPS.
- LPS colocalized with C23 on the cell surface and within the cytoplasm.
- C23 knockdown reduced LPS internalization, NF-κB activation, and TNF-α and IL-6 production.
Conclusions:
- Cell-surface C23 on AMs acts as a receptor for LPS, facilitating its uptake and transport.
- C23 plays a key role in regulating LPS-induced inflammation in AMs.
- Cell-surface C23 represents a potential therapeutic target for bacterial infections.
Abstract:
C23 (nucleolin) shuttling between the nucleus, cytoplasm and cell surface has been implicated in controlling regulatory processes and may play a role in pathogen infection and autoimmune diseases. It has been reported that cell surface-expressed C23 on THP-1 monocytes is involved in the inflammatory response induced by LPS (lipopolysaccharide). This study investigates whether C23 is a membrane receptor for LPS during LPS-induced AMs (alveolar macrophages) activation. First, using immunofluorescence and microscopy, we detected the expression of C23 on the surface of AMs. Second, using LPS affinity columns, we demonstrated that C23 directly binds to LPS. Third, we found that LPS colocalized with C23 on both the cell surface and in the cytoplasm. Finally, knockdown of C23 expression on the cell surface using siRNA (small interfering RNA) led to significant reductions in the internalization of LPS, in LPS-induced NF-κB (nuclear factor κB)-DNA binding and in the protein expression of TNF (tumour necrosis factor)-α and IL-6 (interleukin-6). These findings provide evidence that cell-surface C23 on AMs may serve as a receptor for LPS and are essential for internalization and transport of LPS. Furthermore, C23 participates in the regulation of LPS-induced inflammation of AMs, which indicates that cell-surface C23 is a new and promising therapeutic target for the treatment of bacterial infections.
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