Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Parkin overexpression modulates gut-microbiota composition during aging in Drosophila melanogaster

View through CrossRef
BackgroundThe gut microbiota plays a key role in host health during aging, influencing metabolism, immune function, and lifespan. In older individuals, the microbial community often becomes less diverse and more unstable, which can contribute to chronic inflammation and increased disease risk. Parkin, an E3 ubiquitin ligase, is known to extend lifespan when overexpressed in Drosophila melanogaster, but it's still unclear whether it also influences the gut microbiota during aging and whether this might contribute to its longevity effects.MethodsTo investigate this, we used an inducible genetic system to overexpress Parkin in adult D. melanogaster. Midguts were collected at four time points: days 10, 30, 45, and 60, and bacterial DNA was extracted for 16S rRNA amplicon sequencing to characterize microbiota composition and diversity. To assess the functional impact of these microbial communities, homogenates from Parkin-overexpressing and control flies were fed to germ-free wild-type recipients, followed by monitoring of lifespan and expression of antimicrobial peptides.Results and discussionParkin overexpression resulted in age-dependent changes in gut microbiota composition and diversity. Community structure shifted significantly, with more pronounced differences observed in older flies. When fed to germ-free wild-type flies, homogenates from middle-aged and old control flies reduced the median lifespan. In contrast, the microbiome from Parkin-overexpressing flies was more similar to that of young flies. It did not reduce median lifespan and did not trigger the proinflammatory response seen with the control microbiome. Our findings suggest that Parkin promotes a gut microbial environment that is more balanced and less inflammatory, which may support healthier aging.ConclusionThis study demonstrates that Parkin overexpression influences gut microbiota composition in a way that may be beneficial to host health during aging. The microbial communities associated with Parkin-overexpressing flies were not only distinct but also functionally advantageous, reducing immune activation and extending median lifespan in germ-free recipients. To our knowledge, this is the first study to use Parkin overexpression to explore potential Parkin-related changes in the gut microbial community, changes that were captured dynamically at four different stages of the D. melanogaster lifespan.
Title: Parkin overexpression modulates gut-microbiota composition during aging in Drosophila melanogaster
Description:
BackgroundThe gut microbiota plays a key role in host health during aging, influencing metabolism, immune function, and lifespan.
In older individuals, the microbial community often becomes less diverse and more unstable, which can contribute to chronic inflammation and increased disease risk.
Parkin, an E3 ubiquitin ligase, is known to extend lifespan when overexpressed in Drosophila melanogaster, but it's still unclear whether it also influences the gut microbiota during aging and whether this might contribute to its longevity effects.
MethodsTo investigate this, we used an inducible genetic system to overexpress Parkin in adult D.
melanogaster.
Midguts were collected at four time points: days 10, 30, 45, and 60, and bacterial DNA was extracted for 16S rRNA amplicon sequencing to characterize microbiota composition and diversity.
To assess the functional impact of these microbial communities, homogenates from Parkin-overexpressing and control flies were fed to germ-free wild-type recipients, followed by monitoring of lifespan and expression of antimicrobial peptides.
Results and discussionParkin overexpression resulted in age-dependent changes in gut microbiota composition and diversity.
Community structure shifted significantly, with more pronounced differences observed in older flies.
When fed to germ-free wild-type flies, homogenates from middle-aged and old control flies reduced the median lifespan.
In contrast, the microbiome from Parkin-overexpressing flies was more similar to that of young flies.
It did not reduce median lifespan and did not trigger the proinflammatory response seen with the control microbiome.
Our findings suggest that Parkin promotes a gut microbial environment that is more balanced and less inflammatory, which may support healthier aging.
ConclusionThis study demonstrates that Parkin overexpression influences gut microbiota composition in a way that may be beneficial to host health during aging.
The microbial communities associated with Parkin-overexpressing flies were not only distinct but also functionally advantageous, reducing immune activation and extending median lifespan in germ-free recipients.
To our knowledge, this is the first study to use Parkin overexpression to explore potential Parkin-related changes in the gut microbial community, changes that were captured dynamically at four different stages of the D.
melanogaster lifespan.

Related Results

Expression and purification of recombinant human Parkin and pSer65 Parkin v1
Expression and purification of recombinant human Parkin and pSer65 Parkin v1
Mutations in PARK2 encoding Parkin are causal for early-onset Parkinson’s disease. Parkin is a ubiquitin E3 ligase and is activated by the PINK1 kinase to stimulate ubiquitin-depen...
IMPACT OF GUT MICROBIOTA ON POSTOPERATIVE RECOVERY AND WOUND HEALING
IMPACT OF GUT MICROBIOTA ON POSTOPERATIVE RECOVERY AND WOUND HEALING
The gut microbiota, made up of trillions of microorganisms that inhabit the gastrointestinal tract, plays a fundamental role in human health, influencing immunological and metaboli...
Nuclear Parkin Activates the ERRα Transcriptional Program and Drives Widespread Changes in Gene Expression Following Hypoxia
Nuclear Parkin Activates the ERRα Transcriptional Program and Drives Widespread Changes in Gene Expression Following Hypoxia
AbstractParkin is an E3 ubiquitin ligase well-known for facilitating clearance of damaged mitochondria by ubiquitinating proteins on the outer mitochondrial membrane. However, know...
Parkin deficiency exacerbates fasting-induced skeletal muscle wasting in mice
Parkin deficiency exacerbates fasting-induced skeletal muscle wasting in mice
AbstractParkinson’s Disease (PD) is a chronic and progressive neurodegenerative disease manifesting itself with tremors, muscle stiffness, bradykinesia, dementia, and depression. M...
TIGAR DEFICIENCY ENHANCES CARDIAC RESILIENCE THROUGH EPIGENETIC PROGRAMMING OF PARKIN EXPRESSION
TIGAR DEFICIENCY ENHANCES CARDIAC RESILIENCE THROUGH EPIGENETIC PROGRAMMING OF PARKIN EXPRESSION
ABSTRACT BACKGROUND While mitochondrial dysfunction clearly drives cardiac deterioration in major heart diseases, the mechanism...
The Microbiota and Microbiome in COVID-19 in Adults and Children and Potential Therapeutic Interventions: A Review
The Microbiota and Microbiome in COVID-19 in Adults and Children and Potential Therapeutic Interventions: A Review
The work presented is a comprehensive review of the role of the human microbiota in the context of the COVID-19 pandemic. A diverse microbial community heavily colonizes the human ...
The Development of Self-Perceptions of Aging: The Interplay Between Society and the Self Across the Lifespan
The Development of Self-Perceptions of Aging: The Interplay Between Society and the Self Across the Lifespan
Our thoughts and beliefs about our own aging, known as self-perceptions of aging, are found to greatly impact our health and well-being across the lifespan (Wurm et al., 2015). A l...
A potential role for the gut microbiota in the specialisation of Drosophila sechellia to its toxic host noni (Morinda citrifolia)
A potential role for the gut microbiota in the specialisation of Drosophila sechellia to its toxic host noni (Morinda citrifolia)
Adaptation to a novel food source can have significant evolutionary advantages. The fruit fly, Drosophila sechellia, is a specialist of the toxic plant noni (Morinda citrifolia). L...

Back to Top