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Submaximal exercise capacity is an indicator of cardiorespiratory fitness with clinical and public health implications. Submaximal exercise capacity and its response to exercise programs are characterized by heritability levels of about 40%. Using physical working capacity (power output) at a heart rate of 150 beats/min (PWC150) as an indicator of submaximal exercise capacity in subjects of the HERITAGE Family Study, we have undertaken multi-omics and in silico explorations of the underlying biology of PWC150 and its response to 20 wk of endurance training. Our goal was to illuminate the biological processes and identify panels of genes associated with human variability in intrinsic PWC150 (iPWC150) and its trainability (dPWC150). Our bioinformatics approach was based on a combination of genome-wide association, skeletal muscle gene expression, and plasma proteomics and metabolomics experiments. Genes, proteins, and metabolites showing significant associations with iPWC150 or dPWC150 were further queried for the enrichment of biological pathways. We compared genotype-phenotype associations of emerging candidate genes with reported functional consequences of gene knockouts in mouse models. We investigated the associations between DNA variants and multiple muscle and cardiovascular phenotypes measured in HERITAGE subjects. Two panels of prioritized genes of biological relevance to iPWC150 (13 genes) and dPWC150 (6 genes) were identified, supporting the hypothesis that genes and pathways associated with iPWC150 are different from those underlying dPWC150. Finally, the functions of these genes and pathways suggested that human variation in submaximal exercise capacity is mainly driven by skeletal muscle morphology and metabolism and red blood cell oxygen-carrying capacity. Multi-omics and in silico explorations of the genes and underlying biology of submaximal exercise capacity and its response to 20 wk of endurance training were undertaken. Prioritized genes were identified: 13 genes for variation in submaximal exercise capacity in the sedentary state and 5 genes for the response level to endurance training, with no overlap between them. Genes and pathways associated with submaximal exercise capacity in the sedentary state are different from those underlying trainability.
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http://dx.doi.org/10.1152/physiolgenomics.00163.2022 | DOI Listing |
Monaldi Arch Chest Dis
September 2025
Department of Chest Disease, Istanbul Faculty of Medicine, Istanbul University.
Assessment of exercise capacity is useful in monitoring patients and planning a rehabilitation program for subjects with pulmonary hypertension (PH). No study has investigated the relationship of different field tests, except for the six-minute walk test (6MWT), with balance, activities of daily living (ADL), and quality of life (QoL) in subjects with PH. This study aimed to investigate the relationship of different field tests with balance, ADL, and QoL in subjects with PH.
View Article and Find Full Text PDFInt J Cardiol
September 2025
Department of Molecular and Cellular Sports Medicine, German Sport University Cologne, Am Sportpark Müngersdorf 6, 50933 Cologne, Germany. Electronic address:
Background: Patients with Fontan circulation are often advised to avoid hypoxic exposure due to presumed cardiopulmonary vulnerability. Low-grade inflammation has also been reported in this population and may be influenced by hypoxia and/or exercise. Based on the potential interaction between hypoxia and submaximal exercise in modulating inflammatory signaling, we hypothesized that this combination could exacerbate subclinical inflammation.
View Article and Find Full Text PDFAJPM Focus
October 2025
The Metabolic Centre, Maroochydore, Australia.
Eur J Appl Physiol
September 2025
Department of Health, Exercise Science, and Recreation Management, Kevser Ermin Applied Physiology Laboratory, The University of Mississippi, University, P.O. Box 1848, Oxford, MS, 38677, USA.
Purpose: To examine the effects of submaximal low-load resistance exercise with and without blood flow restriction (BFR) on muscle size, strength, cross-education of strength, and muscular endurance with BFR compared to low-load exercise to failure.
Methods: 144 participants were randomly assigned to: (1) submaximal low-load exercise (LL, n = 37), (2) submaximal low-load exercise with BFR (LL + BFR, n = 35), (3) low-load exercise to failure (LL-Failure, n = 36), and (4) non-exercise control (CON, n = 36). Training consisted of 2 sets of 30% 1RM elbow flexion exercise, performed 3 days/week for 6 weeks.
NMR Biomed
October 2025
High-Field MR Center, Center for Medical Physics and Biomedical Engineering, Medical University of Vienna, Vienna, Austria.
The rate of intramuscular phosphocreatine (PCr) depletion and recovery in response to exercise estimated from P MRS is an established measure for oxidative capacity. The creatine CH resonance in H MRS is known to exhibit a similar pattern. So far, repeating the exercise for consecutive H and P experiments posed limitations on the interpretation.
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