Normal Thymic Architecture and Negative Selection Are Associated with Aire Expression, the Gene Defective in the Autoimmune-Polyendocrinopathy-Candidiasis-Ectodermal Dystrophy (APECED)
Нормальная архитектура тимуса и отрицательная селекция связаны с экспрессией Aire — гена, дефектного при аутоиммунном полиэндокринном синдроме с кандидозом и эктодермальной дистрофией (APECED)
2000-08-01
SCID: 54.1/8fjzbumk
Discuss with AI
APECEDAire expressionnegative selectionself-tolerancethymic stromal cells
Figures from the paper
Abstract (AI)
T cell development is tightly controlled by thymic stromal cells. Alterations in stromal architecture affect T cell maturation and the development of self-tolerance. The monogenic autoimmune syndrome APECED (autoimmune-polyendocrinopathy-candidiasis-ectodermal dystrophy) is characterized by the loss of self-tolerance to multiple organs. Although mutations in the autoimmune regulator (AIRE) gene are responsible for this disease, the function of AIRE is not known. Here we report on the spatial and temporal pattern of murine Aire expression during thymic ontogeny and T cell selection. Early during development, thymic Aire transcription is critically dependent on RelB and occurs in epithelial cells in response to lymphocyte-mediated signals. In adult tissue, Aire expression is confined to the medulla and the corticomedullary junction, where it is modulated by thymocytes undergoing negative selection. Aire may determine thymic stromal organization and with it the induction of self-tolerance.
Key Findings
1
Aire expression is modulated by thymocytes undergoing negative selection, linking Aire to central self-tolerance.
2
Disrupted thymic stromal architecture is associated with impaired T-cell maturation and loss of self-tolerance characteristic of APECED.
3
In adult thymus, Aire expression is restricted to medullary and corticomedullary-junction epithelial regions.
4
The findings suggest Aire may regulate thymic stromal organization and thereby promote tolerance to self-antigens.
5
Thymic Aire expression during development depends critically on RelB and is induced in epithelial cells by lymphocyte-mediated signals.
Research Object
Murine thymic stromal architecture and Aire expression during thymic ontogeny and T cell selection
Research Subject
The spatial and temporal regulation of Aire expression by RelB and thymocyte-mediated signals, and its association with medullary organization and negative selection-induced self-tolerance
Publication Details
Publication Date
2000-08-01
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest