NLRC3 attenuates osteoclastogenesis by limiting TNFα+ Th17 cell response in osteoporosis

Lingyan Ren1,2, Guangjun Liu3, Yun Bai3

  • 1Department of Orthopedics, Guizhou Provincial People's Hospital, Guiyang, Guizhou Province, 550003, China.

Journal of Molecular Medicine (Berlin, Germany)
|March 4, 2024
PubMed

Insights

NOD-like receptor family CARD domain containing 3 (NLRC3) prevents bone loss by inhibiting T-helper 17 (Th17) cell responses. NLRC3 deficiency exacerbates osteoporosis by promoting Th17 cell accumulation and osteoclastogenesis.

Area of Science:

  • Immunology
  • Bone Biology
  • Cellular Signaling

Background:

  • NOD-like receptor family CARD domain containing 3 (NLRC3) is an intracellular protein that negatively regulates inflammatory signaling.
  • The role of NLRC3 in bone remodeling remains largely undefined.
  • NLRC3 influences both innate and adaptive immune responses.

Purpose of the Study:

  • To elucidate the biological role of NLRC3 in bone remodeling and osteoporosis.
  • To investigate the mechanism by which NLRC3 affects bone loss.
  • To determine if NLRC3 is a potential therapeutic target for osteoporosis.

Main Methods:

  • Utilized NLRC3-deficient ovariectomized (OVX) mice models.
  • Transferred wild-type and NLRC3 knockout (KO) CD4+ T cells into Rag1 knockout mice.
  • Analyzed immune cell accumulation, osteoclastogenesis, and inflammatory mediator secretion (RANKL, MIP1α, MCP1).
  • Investigated the role of NF-κB signaling pathway.

Main Results:

  • NLRC3 deficiency aggravated osteoporosis by increasing TNFα+ Th17 cell accumulation in bone marrow.
  • NLRC3-deficient CD4+ T cells promoted osteoclast precursor and inflammatory monocyte recruitment.
  • NLRC3 inhibited Th17 cell-mediated osteoclastogenesis by limiting NF-κB activation.
  • NLRC3 attenuated the secretion of RANKL, MIP1α, and MCP1 from T cells.

Conclusions:

  • NLRC3 plays a critical role in preventing bone loss by negatively regulating Th17 cell responses.
  • NLRC3 modulates bone mass through adaptive immunity, specifically via CD4+ T cells.
  • NLRC3 represents a potential therapeutic target for anti-osteoporosis treatments.

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