INTRODUCTION: Mitochondrial metabolism is essential for T-cell function, but the roles of individual electron transport chain (ETC) components are unclear. Here, we aimed to explore the role of mitochondrial complex I (CI) subunit NADH:ubiquinone oxidoreductase iron-sulfur protein 4 (NDUFS4) in T-cell metabolic fitness and immunity. METHODS: We used a T cell-specific Ndufs4 knockout mouse model to find that NDUFS4 deficiency disrupts CI function, leading to metabolic and redox imbalances. Additionally, T cells from a patient with Leigh syndrome induced by NDUFS4 loss-of-function were analyzed. RESULTS: Ndufs4-deficient T cells exhibit impaired OXPHOS, reduced respiratory capacity, and increased glycolysis, accompanied by reactive oxygen species (ROS) accumulation and defective TCR-driven activation, including reduced proliferation and cytokine production. In vivo, Ndufs4(-/-) mice show T-cell lymphopenia and impaired humoral and cytotoxic immunity. Importantly, T cells from a single Leigh syndrome patient with an NDUFS4 loss-of-function variant showed similar defects, including impaired activation and proliferation. DISCUSSION: These findings highlight the importance of NDUFS4 for human immunity and establish a mechanistic link between complex I dysfunction and T-cell immunodeficiency. Our results identify NDUFS4 as a key regulator connecting mitochondrial integrity to adaptive immune function.
NDUFS4, a mitochondrial complex I subunit, is essential for T-cell metabolic fitness and immune function.
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作者:Shamriz Oded, Bar-On Zahala, Yosef Omri, Cohen-Daniel Leonor, Sheer Ayelet, Reuven Or, Salaymeh Wajeeh, Saragovi Amijai, Somech Raz, Lev Atar, Mor-Shaked Hagar, Tal Yuval, Fattal-Valevski Aviva, Edvardson Simon, Berger Michael
| 期刊: | Frontiers in Immunology | 影响因子: | 5.900 |
| 时间: | 2025 | 起止号: | 2026 Jan 7; 16:1734203 |
| doi: | 10.3389/fimmu.2025.1734203 | ||
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