Site icon DigiAlps LTD

PHGDH: How AI Helped A New Key to Solving Alzheimer’s Disease?

PHGDH: How AI Helped A New Key to Solving Alzheimer’s Disease?

PHGDH: How AI Helped A New Key to Solving Alzheimer’s Disease?

Scientists from the University of California, San Diego have uncovered a surprising new driver of Alzheimer’s disease. Their study, published in Cell (2025), reveals that a protein called PHGDH acts like a “bad boss” in brain cells, triggering harmful changes without needing genetic mutations. You can read the full research paper here.

What is Alzheimer’s and why is it hard to fix?

Imagine your brain is like a big city with many roads. Alzheimer’s disease is like lots of roadblocks and traffic jams in that city, making it hard to think, remember, or do simple tasks. Scientists have long looked for reasons why these roadblocks happen, especially when there are no “bad genes” causing it. A new study found an interesting clue: a protein called PHGDH might be causing some of the trouble!

How PHGDH triggers Alzheimer’s: Boosts harmful genes, causes neuron loss, and how a small molecule inhibitor can block it.

What is PHGDH? (And why should we care?)

PHGDH is a small worker inside your brain cells. Its job is usually to help make a building block called serine, kind of like making bricks to build new houses in the brain city.

But guess what? Scientists discovered PHGDH also does something sneaky — it tells other workers what to do (it controls genes!) — and this sneaky job seems to make the brain worse in Alzheimer’s.

Simple example:
Imagine a brickmaker in a city who secretly tells people to make traffic jams everywhere! That’s PHGDH in Alzheimer’s!

What did the scientists find?

Even when scientists made PHGDH unable to make bricks (no serine!), it still caused trouble.
This means PHGDH’s problem isn’t about making bricks, but about being a bad boss giving wrong orders!

showing PHGDH expression causing amyloid increase in mice.

How did they prove it?

Scientists tested PHGDH in:

When they turned off PHGDH’s bad boss job, the brains stayed cleaner and healthier.

They also found a special medicine that could stop PHGDH from bossing around — it reduced brain problems and improved memory in mice!

How does PHGDH make things worse?

PHGDH gives orders to make two things: IKKa and HMGB1.
These two then:

Simple example:
Imagine the brickmaker (PHGDH) telling janitors to stop cleaning and setting fires all over town. Soon, the city becomes messy and broken.

PHGDH binds to gene promoters and changes gene activity, worsening Alzheimer’s pathology.

A new hope: blocking PHGDH’s bad orders

The scientists found a medicine called NCT-503. It’s like giving the bad boss (PHGDH) a “quiet hat” so he can’t shout bad orders anymore.

Mice that got this medicine:

showing how the drug NCT-503 reduces amyloid and fixes behavior in mice.

How AI Helped Discover PHGDH’s Secret Role

AI was like a super helper behind the scenes in this discovery!

Here’s how AI made the research faster and smarter:

Simple example:
Imagine trying to find one bad person in a city of millions. AI worked like a superhero drone, spotting the troublemaker quickly so scientists could catch him!

Without AI, this discovery would have taken many more years!

They used several advanced tools, but the main tools that helped them make this discovery were:

1. ChIP-seq (Chromatin Immunoprecipitation Sequencing)

2. Single-nucleus RNA-seq (snRNA-seq)

3. AI-based 3D Structure Prediction (AlphaFold)

4. Molecular Docking Simulations

Conclusion: Why is this important?

This discovery is a big deal because:

Simple example:
Instead of just cleaning the city mess, we stop the person causing the mess — and we use a superhero drone (AI) to find him fast!

| Latest From Us

Exit mobile version