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April 24, 2026Immunity4 citationsOpen Access

Organ injury in systemic autoimmunity is mediated by stem-like CD8+ T cells arising from tissue-draining lymph nodes

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JSJafar Al SouzYWYulong WeiCCCan Cui

Key Points

  • This research investigates how stem-like CD8+ T cells contribute to organ injury in systemic lupus erythematosus (SLE).
  • Examined CD8+ T cells in renal-draining lymph nodes of lupus-prone mice.
  • Analyzed differentiation and origin of these T cells through TCR-dependent mechanisms.
  • Assessed functional outcomes of T cell help and signaling pathways on tissue injury.
  • CD8+ T cells showed significant cytotoxic activity and persistent function despite expressing immune checkpoints.
  • Infiltration of these T cells correlated strongly with kidney damage in lupus-prone mice.
  • Similar differentiation patterns were observed in kidney tissues from human lupus nephritis patients.

Abstract

Although loss of B cell tolerance, autoantibody production, and immune complex deposition are hallmarks of systemic lupus erythematosus (SLE), CD8+ T cell infiltration in the kidneys is the best predictor of poor prognosis in lupus nephritis, a severe manifestation of SLE. Here, we examined the origin, differentiation, and functional consequences of CD8+ T cells infiltrating kidneys in lupus-prone mice. TCF-1+ stem-like CD8+ T cells in renal-draining lymph nodes underwent T cell receptor (TCR)-dependent, antigen-driven expansion with differentiation into cytotoxic kidney-infiltrating cells that promoted tissue injury contingent on CD4+ T cell help and interleukin (IL)-21 and IL-15 signaling. CD8+ T cell differentiation was marked by persistent AP-1 activity and cytotoxic function despite increased expression of immune checkpoints. A parallel program of CD8+ T cell differentiation in the kidneys of patients with lupus nephritis reflected shared pathogenesis. Thus, a T cell differentiation program analogous to that in chronic infections and cancer is found in lupus; however, CD8+ T cells in systemic autoimmunity retain effector function despite terminal differentiation.

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Cite This Study

Souz et al. (2026) studied this question.

synapsesocial.com/papers/69eb07a4553a5433e34b32fehttps://doi.org/10.1016/j.immuni.2026.03.022
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