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February 27, 2026Nature Communications0 citationsOpen Access

Context-specific regulatory genetic variation in MTOR dampens neutrophil-T cell crosstalk in pneumonia-associated sepsis

PZPing ZhangPMPamela MacleanAJAlicia Jia

Key Points

  • The main aim is to characterize the genetic variation in MTOR that influences immune responses in sepsis.
  • Characterization of regulatory genetic variants affecting MTOR expression in immune cells.
  • Use of ex vivo models to analyze the interaction between activated T cells and neutrophils.
  • Investigation of the effects of hypoxia and rapamycin on immune cell communication.
  • The G-allele of rs4845987 is linked to reduced MTOR expression in T cells.
  • Improved survival in pneumonia-associated sepsis is observed with the G-allele.
  • Activated T cells were shown to promote immunosuppressive neutrophil activity, which is dampened by hypoxia and rapamycin.

Abstract

Abstract Sepsis is a heterogeneous clinical syndrome with a high mortality, requiring personalised stratification strategies. Here, we characterise genetic variation that modulates MTOR , a critical regulator of metabolism and immune responses in sepsis. The effects are context specific, involving a regulatory element that affects MTOR expression in activated T cells with opposite effect in neutrophils. We show that the G-allele of the lead variant, rs4845987, which is associated with decreased risk of type 2 diabetes, reduces MTOR expression in T cells and improves survival in sepsis due to pneumonia, with effects specific to sepsis endotype. Using ex vivo models, we demonstrate that activated T cells promote immunosuppressive neutrophils through released cytokines, a process dampened by hypoxia and the mTOR inhibitor rapamycin. Our work demonstrates an epigenetic mechanism fine-tuning MTOR transcription and T cell activity via the variant-containing regulatory element, which further exhibits an allelic effect upon vitamin C treatment. These findings reveal how genetic variation interacts with disease state to modulate immune cell-cell communication, providing a framework for stratified therapy in sepsis.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/69a1359eed1d949a99abfaddhttps://doi.org/10.1038/s41467-026-69919-7
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