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Proliferation and Differentiation of Murine Myeloid Precursor 32D/G-CSF-R Cells
Published on: February 21, 2018
Inherited human c-Rel deficiency disrupts myeloid and lymphoid immunity to multiple infectious agents
Romain Lévy1,2,3, David Langlais4, Vivien Béziat1,2,5
1Laboratory of Human Genetics of Infectious Diseases, Necker Branch, INSERM U1163, Paris, France.
Abstract:
We studied a child with severe viral, bacterial, fungal, and parasitic diseases, who was homozygous for a loss-of-function mutation of REL, encoding c-Rel, which is selectively expressed in lymphoid and myeloid cells. The patient had low frequencies of NK, effector memory cells reexpressing CD45RA (Temra) CD8+ T cells, memory CD4+ T cells, including Th1 and Th1*, Tregs, and memory B cells, whereas the counts and proportions of other leukocyte subsets were normal. Functional deficits of myeloid cells included the abolition of IL-12 and IL-23 production by conventional DC1s (cDC1s) and monocytes, but not cDC2s. c-Rel was also required for induction of CD86 expression on, and thus antigen-presenting cell function of, cDCs. Functional deficits of lymphoid cells included reduced IL-2 production by naive T cells, correlating with low proliferation and survival rates and poor production of Th1, Th2, and Th17 cytokines by memory CD4+ T cells. In naive CD4+ T cells, c-Rel is dispensable for early IL2 induction but contributes to later phases of IL2 expression. The patient's naive B cells displayed impaired MYC and BCL2L1 induction, compromising B cell survival and proliferation and preventing their differentiation into Ig-secreting plasmablasts. Inherited c-Rel deficiency disrupts the development and function of multiple myeloid and lymphoid cells, compromising innate and adaptive immunity to multiple infectious agents.
Insights
Inherited c-Rel deficiency severely impacts immune cell development and function. This genetic condition compromises both innate and adaptive immunity, leaving individuals vulnerable to diverse infections.
Area of Science:
- Immunology
- Molecular Biology
- Genetics
Background:
- The transcription factor c-Rel (encoded by REL) is crucial for immune cell function.
- Understanding c-Rel's role is vital for diagnosing and treating immunodeficiencies.
Observation:
- A child with a homozygous loss-of-function mutation in REL presented with severe multi-pathogen infections.
- The patient exhibited reduced frequencies of specific T cell and B cell subsets, including NK cells, memory T cells, and memory B cells.
- Myeloid cell dysfunction included impaired IL-12/IL-23 production and antigen-presenting cell function.
Findings:
- c-Rel deficiency abolished IL-12/IL-23 production by cDC1s and monocytes, impacting antigen presentation.
- Reduced IL-2 production in naive T cells led to poor proliferation, survival, and cytokine production by memory CD4+ T cells.
- Impaired MYC and BCL2L1 induction in naive B cells hindered their differentiation and survival.
Implications:
- Inherited c-Rel deficiency disrupts the development and function of critical myeloid and lymphoid cells.
- This genetic defect compromises innate and adaptive immunity, increasing susceptibility to infections.
- This study highlights c-Rel's essential role in maintaining broad immune defense.
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