Adriana Arruda Matos, Itauá Leston Araujo, Matheus Dominato Munuera, Patrícia Viana Bonini Palma, Camila Bonaldo, Letícia Agrelli Brito, Daniella Arêas Mendes-da-Cruz, Wilson Savino, Geraldo Aleixo Passos, Eduardo Antônio Donadi
The autoimmune regulator (Aire) gene is essential for the establishment of central tolerance by promoting the ectopic expression of tissue-restricted antigens in medullary thymic epithelial cells (mTECs). Although Aire deficiency impairs negative selection, its impact on thymic architecture, output, and early T cell development remains incompletely understood. Here, we used a murine Aire-deficient model carrying a CRISPR-Cas9-induced deletion within exon 6, disrupting the SAND domain, to investigate the consequences of Aire loss on thymic structure and function. Aire-deficient mice exhibited focal alopecia and marked disorganization of the thymic medulla. T cell receptor excision circle (TREC) analyses revealed altered peripheral TREC dynamics and a reduced sj/betaTREC ratio, indicating altered thymic output and impaired intrathymic precursor expansion. Complementary flow-cytometric analysis showed a significant reduction in the proportion of CD4+CD8+ double-positive thymocytes in heterozygous mutants, supporting altered intrathymic maturation. Serum IL-27, IL-28B, and IL-31 were decreased in homozygous mutants, whereas IL-22 and IL-23 remained unchanged. Despite these alterations, TCRVbeta repertoire sequencing revealed no significant differences in rearrangements, clonality, or V/J gene usage. Together, these findings indicate that Aire deficiency disrupts thymic architecture and output, while preserving overall TCR repertoire diversity.