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Biology subjects

Andreyeva, A.

Publications and source records attributed to Andreyeva, A..

2 recordsLinked to original sources

LCK deficiency in CD8 T cells leads to reduced proliferation and increased effector T-cell formation in mice

LCK is an SRC-family kinase that mediates the initial steps in T-cell antigen receptor signaling and governs positive and negative selection during thymocyte development. While its developmental role is well established, its functions in peripheral T-cell responses remain poorly defined. Here, we investigated the responses of wild-type and LCK-deficient TCR-transgenic OT-I T cells across two infection models and an autoimmune diabetes model. LCK-deficient T cells exhibited reduced antigen-induced proliferation but, paradoxically, displayed enhanced effector differentiation in vivo. This phenotype likely reflects dysregulation of specific TCR signaling pathways, as LCK was more critical for ERK and NFAT activation than for NF{kappa}B, AP-1, or AKT/mTOR signaling. T cells deficient in a related kinase FYN also showed a slight increase in effector cell formation, suggesting that effector differentiation is regulated by their combined activity rather than distinct non-redundant roles. Our results reveal that LCK has two intrinsic roles in T-cell responses - promoting proliferation while restraining effector differentiation. These findings provide new insight into the molecular mechanisms of T-cell activation in vivo with implications for understanding the pathophysiology of LCK deficiency in humans and optimizing adoptive T-cell therapies.

immunology↗

IFNG-producing self-reactive CD4+ T cells drive autoimmune adrenalitis in a mouse model of Addison's disease

Autoimmune Addisons disease (AD) is a rare but life-threatening disorder caused by immune-mediated destruction of the adrenal cortex, and progress in therapy has been limited by insufficient mechanistic insight. Here, we establish a model of Experimental Autoimmune Adrenalitis (EAA) that recapitulates key features of AD and reveals sex-dependent differences in disease manifestation within the model. Immunization with peptides derived from the adrenal self-antigen CYP11A1 induces corticosterone insufficiency. We show that autoimmune adrenalitis is driven by IFNG produced by self-reactive CD4 T cells, promoting granulomatous inflammation in the adrenal cortex. Together, these findings identify IFNG as a central effector of autoimmune adrenalitis and suggest that targeting the IFNG pathway may represent a potential therapeutic strategy for AD. SignificanceAddisons disease (AD) is a rare autoimmune disorder that destroys the adrenal cortex, yet its underlying mechanisms remain unknown. We developed a mouse model of Experimental Autoimmune Adrenalitis (EAA) that mirrors the hormonal and immunological features of AD. Our study reveals that IFNG-producing CD4 T cells drive adrenal inflammation and dysfunction, identifying IFNG as a key pathogenic factor and a potential therapeutic target.

immunology↗