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Biology subjects

Maz, M. P.

Publications and source records attributed to Maz, M. P..

2 recordsLinked to original sources

Nuclear proteins acquiring Germinal Center B cells are specifically suppressed by follicular regulatory T cells.

Follicular regulatory T cells (Tfrs) restrict development of autoantibodies and autoimmunity while supporting high-affinity foreign antigen-specific humoral response. However, whether Tfrs can directly repress germinal center (GC) B cells that acquire auto-antigens is unclear. Moreover, TCR specificity of Tfrs to self-antigens is not known. Our study suggests that nuclear proteins contain antigens specific to Tfrs. Targeting of these proteins to antigen-specific B cells triggers rapid accumulation of Tfrs with immunosuppressive characteristics. Tfrs then exert negative regulation of GC B cells with predominant inhibition of the nuclear protein-acquiring GC B cells, suggesting an important role of direct cognate Tfr-GC B cells interactions for the control of effector B cell response.

immunology↗

Non-lesional and Lesional Lupus Skin Share Inflammatory Phenotypes that Drive Activation of CD16+ Dendritic Cells

Cutaneous lupus erythematosus (CLE) is a disfiguring and poorly understood condition frequently associated with systemic lupus. Studies to date suggest that non-lesional keratinocytes play a role in disease predisposition, but this has not been investigated in a comprehensive manner or in the context of other cell populations. To investigate CLE immunopathogenesis, normal-appearing skin, lesional skin, and circulating immune cells from lupus patients were analyzed via integrated single-cell RNA-sequencing and spatial-seq. We demonstrate that normal-appearing skin of lupus patients represents a type I interferon-rich, prelesional environment that skews gene transcription in all major skin cell types and dramatically distorts cell-cell communication. Further, we show that lupus-enriched CD16+ dendritic cells undergo robust interferon education in the skin, thereby gaining pro-inflammatory phenotypes. Together, our data provide a comprehensive characterization of lesional and non-lesional skin in lupus and identify a role for skin education of CD16+ dendritic cells in CLE pathogenesis.

immunology↗