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Rapid Analysis of Chromosome Aberrations in Mouse B Lymphocytes by PNA-FISH
Published on: August 19, 2014
Rpl22 Loss Impairs the Development of B Lymphocytes by Activating a p53-Dependent Checkpoint
Shawn P Fahl1, Bryan Harris1, Francis Coffey1
1Immune Cell Development and Host Defense Program, Fox Chase Cancer Center, Philadelphia, PA 19111
Abstract:
Although ribosomal proteins facilitate the ribosome’s core function of translation, emerging evidence suggests that some ribosomal proteins are also capable of performing tissue-restricted functions either from within specialized ribosomes or from outside of the ribosome. In particular, we have previously demonstrated that germline ablation of the gene encoding ribosomal protein Rpl22 causes a selective and p53-dependent arrest of ab T cell progenitors at the b-selection checkpoint. We have now identified a crucial role for Rpl22 during early B cell development. Germline ablation of Rpl22 results in a reduction in the absolute number of B-lineage progenitors in the bone marrow beginning at the pro–B cell stage. Although Rpl22-deficient pro–B cells are hyporesponsive to IL-7, a key cytokine required for early B cell development, the arrest of B cell development does not result from disrupted IL-7 signaling. Instead, p53 induction appears to be responsible for the developmental defects, as Rpl22 deficiency causes increased expression of p53 and activation of downstream p53 target genes, and p53 deficiency rescues the defect in B cell development in Rpl22-deficient mice. Interestingly, the requirement for Rpl22 in the B cell lineage appears to be developmentally restricted, because Rpl22-deficient splenic B cells proliferate normally in response to Ag receptor and Toll receptor stimuli and undergo normal class-switch recombination. These results indicate that Rpl22 performs a critical, developmentally restricted role in supporting early B cell development by preventing p53 induction.
Insights
Ribosomal protein Rpl22 is essential for early B cell development. Its absence triggers p53, halting B cell maturation, but does not affect mature B cells.
Area of Science:
- Immunology
- Molecular Biology
- Cell Biology
Background:
- Ribosomal proteins primarily aid translation.
- Emerging evidence shows tissue-specific functions for some ribosomal proteins.
- Rpl22 (ribosomal protein L22) ablation previously linked to T cell progenitor arrest.
Purpose of the Study:
- Investigate the role of Rpl22 in B cell development.
- Determine the mechanism behind Rpl22-deficient B cell developmental defects.
Main Methods:
- Germline ablation of the Rpl22 gene in mice.
- Analysis of B-lineage progenitor populations in bone marrow.
- Assessment of IL-7 signaling and p53 pathway activation.
- Evaluation of B cell function in Rpl22-deficient mice.
Main Results:
- Germline Rpl22 ablation reduced B-lineage progenitors at the pro-B stage.
- Rpl22-deficient pro-B cells showed hyporesponsiveness to IL-7, but IL-7 signaling was intact.
- Rpl22 deficiency led to p53 induction and activation of its target genes.
- p53 deficiency rescued the B cell developmental defect in Rpl22-deficient mice.
- Rpl22 was not required for mature splenic B cell proliferation or function.
Conclusions:
- Rpl22 plays a critical, developmentally restricted role in early B cell development.
- Rpl22 prevents p53 induction, thereby supporting B cell progenitor maturation.
- The function of Rpl22 in B cell development is independent of IL-7 signaling pathways.
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