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T-cell receptor (TCR)-induced Ca2+ signals are essential for T-cell activation and function. In this context, mitochondria play an important role and take up Ca2+ to support elevated bioenergetic demands. However, the functional relevance of the mitochondrial-Ca2+-uniporter (MCU) complex in T-cells was not fully understood. Here, we demonstrate that TCR activation causes rapid mitochondrial Ca2+ (mCa2+) uptake in primary naive and effector human CD4+ T-cells. Compared to naive T-cells, effector T-cells display elevated mCa2+ and increased bioenergetic and metabolic output. Transcriptome and proteome analyses reveal molecular determinants involved in the TCR-induced functional reprogramming and identify signalling pathways and cellular functions regulated by MCU. Knockdown of MCUa (MCUaKD), diminishes mCa2+ uptake, mitochondrial respiration and ATP production, as well as T-cell migration and cytokine secretion. Moreover, MCUaKD in rat CD4+ T-cells suppresses autoimmune responses in an experimental autoimmune encephalomyelitis (EAE) multiple sclerosis model. In summary, we demonstrate that mCa2+ uptake through MCU is essential for proper T-cell function and has a crucial role in autoimmunity. T-cell specific MCU inhibition is thus a potential tool for targeting autoimmune disorders.
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Created: 7th Aug 2026 at 10:40
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Projects: CRC1002: Modulatory Units in Heart Failure, TRR 274: Checkpoints of Central Nervous System Recovery, SFB 1190: Compartmental Gates and Contact Sites in Cells
Web page: Not specified
https://rdp.sfb274.de/ (Research Data Platform) https://gepris.dfg.de/gepris/projekt/408885537 (DFG Gepris entry) The central nervous system (CNS) is a terminally differentiated tissue, where any insult carries a heightened risk - yet the tissue response to these insults is variable and can range from irreversible destruction to almost complete recovery. The rules that instruct these divergent outcomes are still unknown. The aim of this CRC is therefore to understand the biology of the multicellular ...
Programme: Sonderforschungsbereiche/Collaborative Research Centers
Public web page: https://www.sfb274.de/
This project focuses on recovery mechanisms of the CNS tissue in the course of acute T-cell mediated autoimmune inflammation. We hypothesize that T-cell induced changes of the grey matter are crucial for the failing recovery of the CNS after repeated autoimmune bouts and that lung microbiota are external regulators of de- and regenerative processes within the CNS tissue. We aim to identify brain-resident and peripheral targets to prevent permanent CNS damage and/or to foster its recovery which ...
Submitter: Camilla Giudici
Studies: Mitochondrial calcium uniporter complex controls T-cell-mediated immune ...
Assays: Expression profiling: scRNA-seq (human), Mass Spectrometry (human), Mass Spectrometry (rat)
Snapshots: No snapshots
Submitter: Camilla Giudici
Assay type: Transcriptomics
Technology type: Sequencing
Investigation: A03 - Checkpoints determining recovery from acu...
Submitter: Camilla Giudici
Assay type: Proteomics
Technology type: Mass Spectrometry
Investigation: A03 - Checkpoints determining recovery from acu...
Submitter: Camilla Giudici
Assay type: Proteomics
Technology type: Mass Spectrometry
Investigation: A03 - Checkpoints determining recovery from acu...
Creators: None
Submitter: Camilla Giudici
Investigations: A03 - Checkpoints determining recovery from acu...
Studies: Mitochondrial calcium uniporter complex control...
Assays: Mass Spectrometry (rat)
Creators: None
Submitter: Camilla Giudici
Investigations: A03 - Checkpoints determining recovery from acu...
Studies: Mitochondrial calcium uniporter complex control...
Assays: Mass Spectrometry (human)
Abstract (Expand)
Authors: Magdalena Shumanska, Dmitri Lodygin, Christine S Gibhardt, Christian Ickes, Ioana Stejerean-Todoran, Lena C M Krause, Kira Pahl, Lianne J H C Jacobs, Andrea Paluschkiwitz, Shuya Liu, Angela Boshnakovska, Niels Voigt, Tobias J Legler, Martin Haubrock, Miso Mitkovski, Gereon Poschmann, Peter Rehling, Sven Dennerlein, Jan Riemer, Alexander Flügel, Ivan Bogeski
Date Published: 2nd Dec 2024
Publication Type: Journal Article
DOI: 10.1038/s44319-024-00313-4
Citation: EMBO Rep 26(2):407-442.
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https://orcid.org/0000-0001-5387-1860