Home » Health » Title: Aging Brains: Diet May Reverse Protein Damage – ScienceAlert

Title: Aging Brains: Diet May Reverse Protein Damage – ScienceAlert

by Dr. Michael Lee – Health Editor

Aging Disrupts Brain Protein Organization, But Dietary Changes Show Promise in New Study

Berlin, Germany – A new study from⁤ the ​Leibniz Institute for Age Research – Fritz Lieber Institute for Molecular Pharmacology (FLI) reveals that⁤ aging‍ significantly alters the organization ​of proteins within the brain, ⁢but ​that dietary interventions, such as calorie restriction, may partially restore protein tagging too levels seen in younger animals. The findings, published in Nature Communications, offer‌ potential insights into improving treatments for age-related neurological​ conditions like Alzheimer’s ​disease.

Researchers found that ubiquitylation – a chemical process that‍ tags‍ proteins for various functions – changes with age in mice.‍ This disruption impacts protein⁤ balance,⁣ a ⁢critical factor for brain health.

“Aging alters⁢ the protein landscape ‌in ⁣the brain,” explains researcher Ori. “Our results show that even in old age, diet can still have an important influence on molecular processes in the ⁤brain.”

The team ‍investigated the effects ⁤of a calorie-restricted diet on older ‍mice, finding that‌ a ⁢four-week period of restriction, followed by‌ a return to a normal diet, restored ubiquitylation levels in some proteins to those observed in younger animals.

While the underlying mechanisms require further investigation,⁤ the ⁤study suggests‌ that dietary adjustments can influence protein tagging in the brain, even ⁢as ‌it ages.However, researchers caution that the effects aren’t universal.

Diet dose not ​affect all aging processes in the brain equally: some are slowed down, while others​ hardly change ‌or even increase,” Ori noted.

The research underscores the complexity of brain aging and highlights the potential‍ for dietary strategies to modulate age-related changes in protein balance. The study has not yet been conducted on humans, but ⁣the findings ⁤represent a step forward in understanding the shifting processes within the brain‌ during aging and could inform future therapeutic approaches.

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