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p97-mediated proteostasis is a checkpoint for late-stage thymocyte positive selection.

Created on 08 Sep 2026

Authors

Ruixian Yu, Weihong Zhang, Yi Han, Wenjia Wang, Yan Meng, Pingping Nie, Cuiwei Zhang, Zaisheng Ye, Bin Yan, Zhaocai Zhou, Shi Jiao

Published in

Cellular & molecular immunology. Sep 07, 2026. Epub Sep 07, 2026.

Abstract

AAA+ ATPase p97 is a central regulator of protein homeostasis, yet its role in late-stage thymocyte development remains undefined. Here, we demonstrate that T-cell-specific ablation of p97 in mice severely blocks the double-positive (DP) to single-positive (SP) transition, with a pronounced defect in CD8+ lineage commitment. Using both genetic deletion and acute pharmacological inhibition, we revealed a stage- and lineage-specific requirement for p97, with DP thymocytes being most sensitive to p97 loss. This failure in late-stage positive selection leads to intrathymic developmental arrest of immature DP cells and profound peripheral T-cell lymphopenia. Mechanistically, p97 deficiency results in the accumulation of ubiquitinated proteins, triggering the unfolded protein response and apoptosis in thymocytes. Furthermore, we identified a critical requirement for p97 in sustaining IL-7 receptor (IL-7R) expression and JAK signaling. Strikingly, pharmacological activation of JAK partially rescued SP thymocyte development in p97-deficient mice. Our findings establish p97-mediated protein homeostasis as a previously uncharacterized, cell-intrinsic checkpoint that is indispensable for late-stage positive selection by preventing proteostatic collapse and ensuring the fidelity of IL-7R signaling.

PMID:
42706435
Bibliographic data and abstract were imported from PubMed on 08 Sep 2026.

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