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Disruption of the preB Cell Receptor Complex Leads to Decreased Bone Mass
Mohamed Khass1,2, Harunur Rashid3, Peter D Burrows4
1Department of Medicine, University of Alabama at Birmingham, Birmingham, AL, United States.
Insights
Components of the pre-B cell receptor (preBCR) are crucial for maintaining bone homeostasis. Loss of preBCR function in mice leads to decreased bone mass and altered bone cell activity, impacting adult bone regulation.
Area of Science:
- Immunology
- Bone Biology
- Cellular Interactions
Background:
- Pre-B cells reside near bone cells in the bone marrow, suggesting potential interactions.
- Factors mediating pre-B cell and bone cell communication are not well understood.
- Pre-B cell receptor (preBCR) integrity is essential for B cell development.
Purpose of the Study:
- To investigate the impact of preBCR formation or function disruption on bone synthesis.
- To determine if components of the preBCR play a role in regulating adult bone mass.
Main Methods:
- Gene-targeted mice with deletions in preBCR components (λ5, IgM-mem, CD19) were studied.
- Bone mass was assessed using micro-computed tomography (μCT) and histomorphometry.
- Bone formation dynamics were evaluated with double calcein labeling.
Main Results:
- Cortical and trabecular bone mass were significantly reduced in λ5 and IgM-mem deficient mice.
- Osteoblast and osteoclast numbers decreased in all three mutant strains.
- Dynamic bone synthesis and mineralization were impaired in λ5-/- mice.
Conclusions:
- Disrupting preBCR formation or function negatively affects bone homeostasis.
- PreBCR components influence adult bone mass independently of mature B cells.
- Specific preBCR components may have distinct roles in bone mass regulation.
Abstract:
In the bone marrow, preB cells are found adjacent to the bone endosteum where bone synthesizing osteoblast and bone resorbing osteoclasts reside. Although there is evidence of interactions between preB and bone cells, the factors that contribute to such interactions are poorly understood. A critical checkpoint for preB cell development assesses the integrity of the nascent immunoglobulin μ heavy chain (HC) by testing whether it can participate in the formation of a preB cell receptor (preBCR), composed of the μ HC and surrogate light chain (LC). In this work, we tested whether loss of preBCR components can affect bone synthesis. A panel of gene targeted mice with sequential blocks in preBCR formation or function [surrogate light chain component lambda 5 deleted (λ5-/-), transmembrane domain of μHC deleted (IgM-mem-/-), and CD19 preBCR co-receptor deleted (CD19-/-)] were evaluated for effects on postnatal bone synthesis. Postnatal bone mass was analyzed in 6 month old mice using μ-CT, histomorphometry and double calcein labeling. Both cortical and trabecular bone mass were significantly decreased in the femurs of the λ5 and IgM-mem deficient mice. Histomorphometric analysis showed a decrease in the numbers of osteoblasts and osteoclasts in all three mutant strains. Double calcein labeling revealed a significant decrease in dynamic synthesis and mineralization of bone in λ5-/- mice. Our data strongly suggest that interference with preBCR formation or function affects bone homeostasis independent of the presence or absence of mature B cells, and that components of the preBCR play important, and potentially distinct, roles in regulating adult bone mass.
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