4.5 Article

Globular C1q receptor (p33) binds and stabilizes pro-inflammatory MCP-1: a novel mechanism for regulation of MCP-1 production and function

期刊

BIOCHEMICAL JOURNAL
卷 475, 期 -, 页码 775-786

出版社

PORTLAND PRESS LTD
DOI: 10.1042/BCJ20170857

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资金

  1. Swedish Dental Society
  2. Southern Region within the Swedish Dental Association
  3. Crafoord Foundation [20170972]
  4. Royal Physiographic Society
  5. Sigurd and Elsa Golje Foundation
  6. Gyllenstiernska Krapperup Foundation
  7. E and K.G. Lennander Foundation
  8. Alfred Osterlund Foundation
  9. Knut and Alice Wallenberg Foundation [KAW 2011.0037]
  10. Swedish Foundation for Strategic research [K2014-56X-13413-15-3]
  11. Swedish Research Council [SB12-0019]
  12. Medical Faculty, Lund University
  13. Swedish Foundation for Strategic Research (SSF) [SB12-0019] Funding Source: Swedish Foundation for Strategic Research (SSF)

向作者/读者索取更多资源

The protein gC1qR (globular C1q receptor), also named p33, was originally identified as a binding partner of the globular heads of C1q in the complement system. gC1qR/p33 is abundantly expressed in many cell types, but the functional importance of this protein is not completely understood. Here, we investigate the impact of gC1qR/p33 on the production and function of the pathophysiologically important chemokine monocyte chemoattractant protein-1 (MCP-1) and the underlying molecular mechanisms. Knockdown of gC1qR/p33 negatively regulated the production of MCP-1, but had no effect on the expression of transcript for MCP-1 in human periodontal ligament cells, suggesting a translational/post-translational mechanism of action. Laser scanning confocal microscopy showed considerable cytosolic co-localization of gC1qR/p33 and MCP-1, and co-immunoprecipitation disclosed direct physical interaction between gC1qR/p33 and MCP-1. Surface plasmon resonance analysis revealed a high-affinity binding (K-D = 10.9 nM) between gC1qR/p33 and MCP-1. Using a transwell migration assay, we found that recombinant gC1qR/p33 enhances MCP-1-induced migration of human THP-1 monocytes, pointing to a functional importance of the interaction between gC1qR/p33 and MCP-1. An in vitro assay revealed a rapid turnover of the MCP-1 protein and that gC1qR/p33 stabilizes MCP-1, hence preventing its degradation. We propose that endogenous gC1qR/p33 physically interacts with MCP-1 causing stabilization of the MCP-1 protein and stimulation of its activity in human periodontal ligament cells, suggesting a novel gC1qR/p33-mediated pro-inflammatory mechanism of action.

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