The control of non-coding repeated DNA by DNA methylation plays an important role in genomic stability, contributing to health and healthy aging. Mind-body practices can elicit psychophysical wellbeing via epigenetic mechanisms, including DNA methylation. However, in this context the effects of movement meditations have rarely been examined. Consequently, the current study investigates the effects of a specifically structured movement meditation, called the Quadrato Motor Training (QMT) on psychophysical wellbeing and on the methylation level of repeated sequences. An 8-week daily QMT program was administered to healthy women aged 40–60 years and compared with a passive control group matched for gender and age. Psychological well-being was assessed within both groups by using self-reporting scales, including the Meaning in Life Questionnaire [MLQ] and Psychological Wellbeing Scale [PWB]). DNA methylation profiles of repeated sequences (ribosomal DNA, LINE-1 and Alu) were determined in saliva samples by deep-sequencing. In contrast to controls, the QMT group exhibited increased Search for Meaning, decreased Presence of Meaning and increased Positive Relations, suggesting that QMT may lessen the automatic patterns of thinking. In the QMT group, we also found site-specific significant methylation variations in ribosomal DNA and LINE-1 repeats, consistent with increased genome stability. Finally, the correlations found between changes in methylation and psychometric indices (MLQ and PWB) suggest that the observed epigenetic and psychological changes are interrelated. Collectively, the current results indicate that QMT may improve psychophysical health trajectories by influencing the DNA methylation of specific repetitive sequences.

Quadrato Motor Training (QMT) is associated with DNA methylation changes at DNA repeats: A pilot study / Marson F.; Zampieri M.; Verdone L.; Bacalini M.G.; Ravaioli F.; Morandi L.; Chiarella S.G.; Vetriani V.; Venditti S.; Caserta M.; Raffone A.; Ben-Soussan T.D.; Reale A.. - In: PLOS ONE. - ISSN 1932-6203. - ELETTRONICO. - 18:10(2023), pp. e0293199.1-e0293199.22. [10.1371/journal.pone.0293199]

Quadrato Motor Training (QMT) is associated with DNA methylation changes at DNA repeats: A pilot study

Ravaioli F.;Morandi L.;
2023

Abstract

The control of non-coding repeated DNA by DNA methylation plays an important role in genomic stability, contributing to health and healthy aging. Mind-body practices can elicit psychophysical wellbeing via epigenetic mechanisms, including DNA methylation. However, in this context the effects of movement meditations have rarely been examined. Consequently, the current study investigates the effects of a specifically structured movement meditation, called the Quadrato Motor Training (QMT) on psychophysical wellbeing and on the methylation level of repeated sequences. An 8-week daily QMT program was administered to healthy women aged 40–60 years and compared with a passive control group matched for gender and age. Psychological well-being was assessed within both groups by using self-reporting scales, including the Meaning in Life Questionnaire [MLQ] and Psychological Wellbeing Scale [PWB]). DNA methylation profiles of repeated sequences (ribosomal DNA, LINE-1 and Alu) were determined in saliva samples by deep-sequencing. In contrast to controls, the QMT group exhibited increased Search for Meaning, decreased Presence of Meaning and increased Positive Relations, suggesting that QMT may lessen the automatic patterns of thinking. In the QMT group, we also found site-specific significant methylation variations in ribosomal DNA and LINE-1 repeats, consistent with increased genome stability. Finally, the correlations found between changes in methylation and psychometric indices (MLQ and PWB) suggest that the observed epigenetic and psychological changes are interrelated. Collectively, the current results indicate that QMT may improve psychophysical health trajectories by influencing the DNA methylation of specific repetitive sequences.
2023
Quadrato Motor Training (QMT) is associated with DNA methylation changes at DNA repeats: A pilot study / Marson F.; Zampieri M.; Verdone L.; Bacalini M.G.; Ravaioli F.; Morandi L.; Chiarella S.G.; Vetriani V.; Venditti S.; Caserta M.; Raffone A.; Ben-Soussan T.D.; Reale A.. - In: PLOS ONE. - ISSN 1932-6203. - ELETTRONICO. - 18:10(2023), pp. e0293199.1-e0293199.22. [10.1371/journal.pone.0293199]
Marson F.; Zampieri M.; Verdone L.; Bacalini M.G.; Ravaioli F.; Morandi L.; Chiarella S.G.; Vetriani V.; Venditti S.; Caserta M.; Raffone A.; Ben-Soussan T.D.; Reale A.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/963635
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