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Biology subjects

Knowles, O. E.

Publications and source records attributed to Knowles, O. E..

2 recordsLinked to original sources

Total testosterone is not associated with muscle mass, function or exercise adaptations in pre-menopausal females

Key pointsO_LIBioavailable testosterone was positively related to exercise-induced muscle hypertrophy in pre-menopausal females. C_LIO_LINuclear localisation of the androgen receptor was positively related to muscle mass in pre-menopausal females before resistance training, but not with resistance-training induced hypertrophy. C_LIO_LITotal testosterone is not related to muscle mass or strength in pre-menopausal females. C_LIO_LITestosterone treatment induced androgen receptor nuclear translocation, but did not induce mTOR signalling in myocytes from pre-menopausal females. C_LI Testosterone, the major androgen hormone, influences the reproductive and non-reproductive systems in males and females via binding to the androgen receptor (AR). Both circulating endogenous testosterone and muscle AR protein content are positively associated with muscle mass and strength in males, but there is no such evidence in females. Here, we tested whether circulating testosterone levels were associated with muscle mass, function, or the muscle anabolic response to resistance training in pre-menopausal females. Twenty-seven pre-menopausal, untrained females (aged 23.5 {+/-} 4.8) underwent a 12-week resistance training program. Muscle strength, size, power and plasma and urine androgen hormone levels were measured. Skeletal muscle biopsies were collected before and after the training program to quantify the effect of resistance training on AR protein and mRNA content, and nuclear localisation. Primary muscle cell lines were cultured from a subset (n=6) of the participants biopsies and treated with testosterone to investigate its effect on myotube diameter, markers of muscle protein synthesis and AR cellular localisation. Total testosterone was not associated with muscle mass or strength at baseline or with the changes in muscle mass and strength that occurred in response to resistance training. In vitro, supra-physiological doses of testosterone increased myocyte diameter, but this did not occur via the Akt/mTOR pathway as previously suggested. Instead, we show a marked increase in AR nuclear localisation with testosterone administration. In conclusion, we found that, bioavailable testosterone and the proportion of nuclear-localised AR, but not total testosterone, with skeletal muscle mass and strength in pre-menopausal females.

physiology↗

The interactive effect of sustained sleep restriction and resistance exercise on skeletal muscle transcriptomics in young females

IntroductionBoth sleep loss and exercise regulate gene expression in skeletal muscle, yet little is known about how the interaction of these stressors affects the transcriptome. The aim of this study was to investigate the effect of nine nights of sleep restriction, with repeated resistance exercise (REx) sessions, on the skeletal muscle transcriptome of young, trained females. MethodsTen healthy females aged 18-35 years undertook a randomised cross-over study of nine nights sleep restriction (SR; 5-h time in bed) and normal sleep (NS; [&ge;]7 h time in bed) with a minimum 6-week washout. Participants completed four REx sessions per condition (day 3, 5, 7 and 9). Muscle biopsies were collected both pre- and post-REx on days 3 and 9. Gene and protein expression were assessed by RNA sequencing and Western Blot, respectively. ResultsThree or nine nights of sleep restriction had no effect on the muscle transcriptome independently of exercise. However, close to 3000 transcripts were differentially regulated (FDR < 0.05) 48 h post the completion of three resistance exercise sessions in both NS and SR conditions. Only 39% of downregulated and 18% of upregulated genes were common between both conditions, indicating a moderating effect of sleep restriction on the response to exercise. ConclusionSleep restriction and resistance exercise interacted to alter the enrichment of skeletal muscle transcriptomic pathways in young, resistance-trained females. Performing exercise when sleep restricted may not provide the same adaptive response for individuals as if they were fully rested.

genomics↗