How boosting brain energy improves long-term memory

2026-02-25
2 min read.
Researchers discovered that keeping calcium inside the energy centers of brain cells for longer periods helps animals form lasting memories with much less effort and training than usual.
How boosting brain energy improves long-term memory
Credit: Tesfu Assefa

The brain is an organ that requires a massive amount of power to function. Every time we think or learn, our brain cells, which are known as neurons, become active. To stay active, these cells need a specific type of fuel called ATP, the energy molecule used by all living cells. This energy is produced inside small structures called mitochondria, which act as the powerhouses of the cell. Calcium helps control how much energy is made. When a neuron is busy, calcium enters the mitochondria and kicks off the Krebs cycle. This cycle is a series of chemical reactions that produce the fuel the brain needs to keep working.

Scientists recently investigated what happens if the brain is given more energy than it usually requires. They focused on a protein called LETM1. This protein normally acts like a drain that lets calcium out of the mitochondria once it is no longer needed. By reducing the amount of this protein, the researchers kept calcium inside the energy centers for a longer time. This caused the mitochondria to produce extra ATP. This approach increased energy without causing calcium to build up to dangerous levels that could hurt the cells.

How extra energy affects animal behavior

The researchers tested this idea on fruit flies and mice to see how it changed their behavior. Usually, a fruit fly needs to experience a lesson several times to remember it the next day. However, with the extra energy boost, the flies could remember a lesson after only one try. This improvement was specifically seen in long-term memory, which is the ability to store information for more than a day. It did not seem to change memories that only last for a few hours.

This suggests that energy is more than just a simple fuel. It acts as a regulator that decides how strong and long-lasting a memory will be. The study shows that the brain may have a hidden ability to perform better if its energy levels are managed differently. While this research is still in the early stages, it could lead to new ways to improve how we think and learn in the future.

This research is published in Nature Metabolism.

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