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Bonnet, M.

Publications and source records attributed to Bonnet, M..

2 recordsLinked to original sources

A Gender-Dependent Molecular Switch of Inflammation via MyD88/Estrogen Receptor-alpha Interaction

Most Toll-like receptors and IL-1/IL-18 receptors activate a signaling cascade via the adaptor molecule MyD88, resulting in NF-{kappa}B activation and inflammatory cytokine and chemokine production. Females are less susceptible than males to inflammatory conditions, presumably due to protection by estrogen. Here we show that MyD88 interacts with a methylated, cytoplasmic form of estrogen receptor-alpha (methER-). This interaction is required for NF-{kappa}B transcriptional activity and pro-inflammatory cytokine production, and is dissociated by estrogen. Importantly, we show a strong gender segregation in gametogenic reproductive organs, with MyD88/methER- interactions found in testicular tissues and in ovarian tissues from menopausal women, but not in ovaries from women age 49 and less -suggesting a role for estrogen in disrupting this complex in situ. Collectively, our results indicate that the formation of MyD88/methER- complexes during inflammatory signaling and their disruption by estrogen may represent a mechanism that contributes to gender bias in inflammatory responses.

immunology

A dynamical model of TCRβ gene recombination: Coupling the initiation of Dβ-Jβ rearrangement to TCRβ allelic exclusion

One paradigm of random monoallelic gene expression is that of T-cell receptor (TCR){beta} allelic exclusion in T lymphocytes. However, the dynamics that sustain asymmetric choice in TCR{beta} dual allele usage and the production of TCR{beta} monoallelic expressing T-cells remain poorly understood. Here, we develop a computational model to explore a scheme of TCR{beta} allelic exclusion based on the stochastic initiation of DNA rearrangement [V(D)J recombination] at homologous alleles in T-cell progenitors, and thus account for the genotypic profiles typically associated with allelic exclusion in differentiated T-cells. Disturbances in these dynamics at the level of an individual allele have limited consequences on these pro1les, robust feature of the system that is underscored by our simulations. Our study predicts a biological system in which locus-specific, prime epigenetic allelic activation effects set the stage to both optimize the production of TCR{beta} allelically excluded T-cells and curtail the emergence of their allelically included counterparts.

immunology