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Biology subjects

Umphred-Wilson, K.

Publications and source records attributed to Umphred-Wilson, K..

2 recordsLinked to original sources

TLR2 on CD4+ and CD8+ T cells promotes late control of Mycobacterium tuberculosis infection

Although a role for TLR2 on T cells has been indicated in prior studies, in vivo stimulation of TLR2 on T cells by Mtb and its impact on Mtb infection has not been tested. Furthermore, it is not known if the enhanced susceptibility to Mtb of Tlr2 gene knockout (ko) mice is due to its role in macrophages, on T cells or both. To address TLR2 on T cells, we generated Tlr2fl/flxCd4cre/cre mice, which lack expression of TLR2 on both CD4 and CD8 T cells, to study the in vivo role of TLR2 on T cells after aerosol infection with virulent Mtb. Deletion of TLR2 in CD4+ and CD8+ T cells reduces their ability to be co-stimulated by TLR2 ligands for cytokine production. These include both pro-(IFN-{gamma}, TNF-) and anti-inflammatory cytokines (IL-10). Deletion of TLR2 in T cells did not affect early control but did result in decreased late control of Mtb in the lungs of infected mice. This suggests that T cell co-stimulation by mycobacterial TLR2 ligands in vivo is important for control of infection during the chronic phase of Mtb infection in the lung.

immunology↗

Notch-Induced Endoplasmic Reticulum-Associated Degradation Governs Thymocyte β-Selection

Signals from the pre-T cell receptor and Notch coordinately instruct {beta}-selection of CD4-CD8- double negative (DN) thymocytes to generate {beta} T cells in the thymus. However, how these signals ensure a high-fidelity proteome and safeguard the clonal diversification of the pre- selection TCR repertoire given the considerable translational activity imposed by {beta}-selection is largely unknown. Here, we identify the endoplasmic reticulum (ER)-associated degradation (ERAD) machinery as a critical proteostasis checkpoint during {beta}-selection. Expression of the SEL1L-HRD1 complex, the most conserved branch of ERAD, is directly regulated by the transcriptional activity of the Notch intracellular domain. Deletion of Sel1l impaired DN3 to DN4 thymocyte transition and severely impaired {beta} T cell development. Mechanistically, Sel1l deficiency induced unresolved ER stress that triggered thymocyte apoptosis through the PERK pathway. Accordingly, genetically inactivating PERK rescued T cell development from Sel1l- deficient thymocytes. Our study reveals a critical developmental signal controlled proteostasis mechanism that enforces T cell development to ensure a healthy adaptive immunity.

immunology↗