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April 5, 2026Frontiers in Molecular Biosciences5 citationsOpen Access

Sensing succinate: SUCNR1 as a context-dependent metabolic and cellular signal integrator

ALAenne-Dorothea LiebingCSClaudia Stäubert

Key Points

  • This review aims to explore the dual roles of succinate and SUCNR1 in metabolic signaling and immune response.
  • Reviewed recent literature on SUC-SUCNR1 signaling in metabolic and immune systems.
  • Analyzed the context-dependent activation of SUCNR1 in different tissues.
  • Discussed unresolved issues in signaling specificity and therapeutic implications.
  • SUC accumulates under conditions of low oxygen and metabolic stress, activating SUCNR1.
  • SUCNR1 influences macrophage behavior by promoting either inflammation or resolution based on the metabolic state.
  • The receptor's signaling output varies according to G protein preferences and cellular contexts.

Abstract

Succinate (SUC), a central intermediate in the mitochondrial tricarboxylic acid (TCA) cycle, functions not only as a metabolic substrate but also acts as the endogenous ligand for succinate receptor 1 (SUCNR1), a G i - and G q protein-coupled receptor. SUC accumulates when energy demand exceeds oxygen supply or during metabolic rewiring, including hypoxia, endurance exercise, inflammation, and tumor progression. SUC can be released into the extracellular space, reaching levels sufficient to activate SUCNR1. SUCNR1 is expressed in various tissues, including the kidney, liver, and adipose tissue, as well as in immune cells and cancer subtypes. Rather than functioning as a simple pro- or anti-inflammatory receptor, SUCNR1 acts as a metabolic signal integrator whose output is determined by G protein preferences, receptor trafficking, and the balance between intra- and extracellular SUC pools. In immune cells, particularly macrophages, SUCNR1 signaling promotes either inflammatory activation or resolution depending on the metabolic state. In metabolic tissues and cancer, SUCNR1 coordinates adaptive responses to nutrient and oxygen stress while shaping the tissue microenvironment. Here, we review recent advances in SUC-SUCNR1 signaling across immune and metabolic systems, discuss unresolved controversies regarding signaling selectivity and spatial encoding, and evaluate the therapeutic opportunities and challenges of targeting this metabolic checkpoint.

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Cite This Study

Liebing et al. (2026) studied this question.

synapsesocial.com/papers/69d1fb20a79560c99a0a1978https://doi.org/10.3389/fmolb.2026.1815835
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