Search bioRxiv⌕ Search

Biology subjects

Kisand, K.

Publications and source records attributed to Kisand, K..

2 recordsLinked to original sources

Aire-dependent transcripts escape H3K36me3 and Raver2 induced alternative splicing to sustain central immune tolerance

Aire allows medullary thymic epithelial cells (mTECs) to express and present a large number of self-antigens for central tolerance. Although mTECs express a high diversity of self-antigen splice isoforms, the extent and regulation of alternative splicing events (ASEs) included in their transcripts, notably in those induced by Aire, is unknown. Unexpectedly, and in contrast to Aire-neutral genes, we found that the Aire-sensitive genes exhibit in Aire-positive and negative mTECs, a weak inclusion of ASEs, with about a quarter present in peripheral tissues being excluded from the thymus. We identified Raver2, as a splicing-related factor overrepresented in mTECs and dependent on H3K36me3 marks. We discovered that both Raver2 and methylation of H3K36 promoted ASE inclusion for Aire-neutral genes, leaving Aire-sensitive genes unaffected. Profiling of H3K36me3 revealed its depletion at Aire-sensitive genes, supporting a mechanism, whose setup precedes Aires expression and by which Aire-sensitive genes exhibit weak ASE inclusion through the escape of Raver2s effect. Lack of ASEs in Aire-induced transcripts highlights a role for regulatory T cells in controlling the incomplete Aire-dependent negative selection.

immunology↗

Differential levels of IFNα subtypes in autoimmunity and viral infection

Type I interferons are essential for host response to viral infections, while dysregulation of their response can result in autoinflammation or autoimmunity. Among IFN (alpha) responses, 13 subtypes exist that signal through the same receptor, but have been reported to have different effector functions. However, the lack of available tools for discriminating these closely related subtypes, in particular at the protein level, has restricted the study of their differential roles in disease. We developed a digital ELISA with specificity and high sensitivity for the IFN2 subtype. Application of this assay, in parallel with our previously described pan-IFN assay, allowed us to study different IFN protein responses following cellular stimulation and in diverse patient cohorts. We observed different ratios of IFN protein responses between viral infection and autoimmune patients. This analysis also revealed a small percentage of autoimmune patients with high IFN2 protein measurements but low pan-IFN measurements. Correlation with an ISG score and functional activity showed that in this small sub group of patients, IFN2 protein measurements did not reflect its biological activity. This unusual phenotype was partly explained by the presence of anti-IFN auto-antibodies in a subset of autoimmune patients. This study reports ultrasensitive assays for the study of IFN proteins in patient samples and highlights the insights that can be obtained from the use of multiple phenotypic readouts in translational and clinical studies.

immunology↗