T regulatory (Treg) cells expressing the transcription factor FoxP3 play a key role in protection against autoimmune disease. GFP-FoxP3 reporter mice have been used widely to study the induction, function and stability of both thymically- and peripherally-induced Treg cells. The N-terminal modification of FoxP3, however, affects its interaction with transcriptional co-factors; this can alter Treg cell development and function in certain self-antigen specific animal models. Interestingly, Treg cell function can be negatively or positively affected, depending on the nature of the model. In this study, we focused on the effect of the GFP-FoxP3 reporter on Treg cell development and function in the Tg4 mouse model. In this model, T cells express...
Type 1 diabetes (T1D) represents a hallmark of the fatal multiorgan autoimmune syndrome affecting hu...
Type 1 diabetes (T1D) represents a hallmark of the fatal multiorgan autoimmune syndrome affecting hu...
Inflammatory neuropathies represent disabling human autoimmune disorders with considerable disease v...
Maintenance of lymphoid homeostasis in a number of immunological and inflammatory contexts is served...
SummaryRegulatory T (Treg) cells, driven by the Foxp3 transcription factor, are responsible for limi...
Accumulating evidence suggests that defective regulation is an essential underlying cause of autoimm...
SummaryMaintenance of lymphoid homeostasis in a number of immunological and inflammatory contexts is...
Abstract The discovery of the transcription factor Forkhead box-p3 (Foxp3) has shed fundamental ins...
SummaryStable Foxp3 expression is crucial for regulatory T (Treg) cell function. We observed that an...
Stable Foxp3 expression is crucial for regulatory T (Treg) cell function. We observed that antigen-d...
Abstract The discovery of the transcription factor Forkhead box-p3 (Foxp3) has shed fundamental ins...
FOXP3 controls the development and function of T regulatory cells (Tregs). Autoimmunity is linked to...
Type 1 diabetes (T1D) represents a hallmark of the fatal multiorgan autoimmune syndrome affecting hu...
Type 1 diabetes (T1D) represents a hallmark of the fatal multiorgan autoimmune syndrome affecting hu...
Regulatory T cells (Tregs), expressing the transcription factor Foxp3, form a key component of perip...
Type 1 diabetes (T1D) represents a hallmark of the fatal multiorgan autoimmune syndrome affecting hu...
Type 1 diabetes (T1D) represents a hallmark of the fatal multiorgan autoimmune syndrome affecting hu...
Inflammatory neuropathies represent disabling human autoimmune disorders with considerable disease v...
Maintenance of lymphoid homeostasis in a number of immunological and inflammatory contexts is served...
SummaryRegulatory T (Treg) cells, driven by the Foxp3 transcription factor, are responsible for limi...
Accumulating evidence suggests that defective regulation is an essential underlying cause of autoimm...
SummaryMaintenance of lymphoid homeostasis in a number of immunological and inflammatory contexts is...
Abstract The discovery of the transcription factor Forkhead box-p3 (Foxp3) has shed fundamental ins...
SummaryStable Foxp3 expression is crucial for regulatory T (Treg) cell function. We observed that an...
Stable Foxp3 expression is crucial for regulatory T (Treg) cell function. We observed that antigen-d...
Abstract The discovery of the transcription factor Forkhead box-p3 (Foxp3) has shed fundamental ins...
FOXP3 controls the development and function of T regulatory cells (Tregs). Autoimmunity is linked to...
Type 1 diabetes (T1D) represents a hallmark of the fatal multiorgan autoimmune syndrome affecting hu...
Type 1 diabetes (T1D) represents a hallmark of the fatal multiorgan autoimmune syndrome affecting hu...
Regulatory T cells (Tregs), expressing the transcription factor Foxp3, form a key component of perip...
Type 1 diabetes (T1D) represents a hallmark of the fatal multiorgan autoimmune syndrome affecting hu...
Type 1 diabetes (T1D) represents a hallmark of the fatal multiorgan autoimmune syndrome affecting hu...
Inflammatory neuropathies represent disabling human autoimmune disorders with considerable disease v...