Publication:
Lactate sensing mechanisms in arterial chemoreceptor cells

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Date

2021-07-06

Authors

Torres-Torrelo, Hortensia
Ortega-Sáenz, Patricia
Gao, Lin
López-Barneo, José

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Nature Publishing Group
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Abstract

Classically considered a by-product of anaerobic metabolism, lactate is now viewed as a fundamental fuel for oxidative phosphorylation in mitochondria, and preferred over glucose by many tissues. Lactate is also a signaling molecule of increasing medical relevance. Lactate levels in the blood can increase in both normal and pathophysiological conditions (e.g., hypoxia, physical exercise, or sepsis), however the manner by which these changes are sensed and induce adaptive responses is unknown. Here we show that the carotid body (CB) is essential for lactate homeostasis and that CB glomus cells, the main oxygen sensing arterial chemoreceptors, are also lactate sensors. Lactate is transported into glomus cells, leading to a rapid increase in the cytosolic NADH/NAD+ ratio. This in turn activates membrane cation channels, leading to cell depolarization, action potential firing, and Ca2+ influx. Lactate also decreases intracellular pH and increases mitochondrial reactive oxygen species production, which further activates glomus cells. Lactate and hypoxia, although sensed by separate mechanisms, share the same final signaling pathway and jointly activate glomus cells to potentiate compensatory cardiorespiratory reflexes.

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Medical Subject Headings::Organisms::Eukaryota::Animals
Medical Subject Headings::Anatomy::Cardiovascular System::Blood Vessels::Arteries
Medical Subject Headings::Anatomy::Nervous System::Neurons::Neurons, Afferent::Sensory Receptor Cells::Chemoreceptor Cells::Paraganglia, Nonchromaffin::Carotid Body
Medical Subject Headings::Anatomy::Cells::Neurons::Neurons, Afferent::Sensory Receptor Cells::Chemoreceptor Cells
Medical Subject Headings::Phenomena and Processes::Physiological Phenomena::Physiological Processes::Homeostasis
Medical Subject Headings::Phenomena and Processes::Chemical Phenomena::Hydrogen-Ion Concentration
Medical Subject Headings::Chemicals and Drugs::Amino Acids, Peptides, and Proteins::Proteins::Carrier Proteins::Membrane Transport Proteins::Ion Channels
Medical Subject Headings::Chemicals and Drugs::Organic Chemicals::Carboxylic Acids::Hydroxy Acids::Lactates::Lactic Acid
Medical Subject Headings::Anatomy::Cells::Cellular Structures::Intracellular Space::Cytoplasm::Cytoplasmic Structures::Organelles::Mitochondria
Medical Subject Headings::Phenomena and Processes::Chemical Phenomena::Biochemical Phenomena::Biochemical Processes::Phosphorylation
Medical Subject Headings::Chemicals and Drugs::Inorganic Chemicals::Oxygen Compounds::Reactive Oxygen Species
Medical Subject Headings::Phenomena and Processes::Chemical Phenomena::Chemical Processes
Medical Subject Headings::Phenomena and Processes::Cell Physiological Phenomena::Membrane Potentials::Action Potentials
Medical Subject Headings::Phenomena and Processes::Chemical Phenomena::Biochemical Phenomena::Biochemical Processes::Anaerobiosis
Medical Subject Headings::Phenomena and Processes::Chemical Phenomena::Biochemical Phenomena::Biochemical Processes::Phosphorylation::Oxidative Phosphorylation
Medical Subject Headings::Phenomena and Processes::Musculoskeletal and Neural Physiological Phenomena::Musculoskeletal Physiological Phenomena::Musculoskeletal Physiological Processes::Movement::Motor Activity::Exercise
Medical Subject Headings::Chemicals and Drugs::Organic Chemicals::Carboxylic Acids::Hydroxy Acids::Lactates
Medical Subject Headings::Diseases::Bacterial Infections and Mycoses::Infection::Sepsis

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Keywords

Carotid body, Reactive oxygen species, Hypoxia, Mitochondria, Homeostasis, Lactate dehydrogenase, Chemoreceptor cells, Cation Channels, Cuerpo carotídeo, Especies reactivas de oxígeno, Hipoxia, Mitocondrias, Células quimiorreceptoras

Citation

Torres-Torrelo H, Ortega-Sáenz P, Gao L, López-Barneo J. Lactate sensing mechanisms in arterial chemoreceptor cells. Nat Commun. 2021 Jul 6;12(1):4166