Mitochondria are organelles essential for maintaining energetic support and cellular homeostasis. In phrenic motor neurons (PhMNs), mitochondria support the high level of activity necessary to sustain neuromotor control of the diaphragm muscle during breathing. Previously, we observed that small PhMNs recruited during breathing have higher mitochondrial volume density (MVD) compared to large PhMNs that are recruited infrequently during higher force airway clearance behaviors. In support, we also found that the maximum velocity of the succinate dehydrogenase activity (SDHmax) was higher in small PhMNs compared to large PhMNs. However, total mitochondrial volume was comparable across PhMNs of varying size. This suggests that the total ATP demands of PhMNs do not vary with size. The distribution of mitochondria likely reflects the demands of ATP consumption. In airway smooth muscle cells, mitochondria are not homogeneously distributed, with a higher density in the perinuclear region. In addition, mitochondria appear to be localized in close proximity to the endoplasmic reticulum (ER) most likely to support cytosolic and mitochondrial Ca 2+ regulation. The ER is also clustered in the perinuclear compartment of cells. Perinuclear clustering of mitochondria most likely reflects the higher ATP consumption close to the nucleus. We hypothesized that MVD is higher in the perinuclear region of PhMNs compared to more distal compartments. PhMNs of young (6 month), female and male Fisher 344 rats were retrogradely labeled by intrapleural injection of Alexa 488-conjugated cholera toxin B (CTB). Three days later, mitochondria were labeled by subdural injection of MitoTracker Red CMXRos. Spinal cord tissue was collected following transcranial perfusion with 4% paraformaldehyde, sectioned longitudinally at 70 µm, and mounted onto slides. Mosaics of labeled PhMNs and mitochondria were acquired in 3D (Z optical slices of 0.5 μm) using a 60x Plan Apo oil-immersion objective (NA 1.40). Using a concentric (10 mm) shell method for analysis, MVD was quantified relative to the distance relative to the nuclear membrane of PhMNs. Our results show a disproportionately higher MVD within the perinuclear region compared to more distal regions of PhMNs. This perinuclear distribution of mitochondria was found across PhMNs of varying size. These results suggest that energetic requirements of nucleus and ER are major drivers of mitochondrial biogenesis. This abstract was presented at the American Physiology Summit 2026 and is only available in HTML format. There is no downloadable file or PDF version. The Physiology editorial board was not involved in the peer review process.
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