AI Research

Google's AI genome system evaluates every possible one-base change

1 min read Source: Ars Technica AI

What this AI news story is about

Most one-base changes to the human genome do nothing, but a few are significant.

What happened

On Tuesday, Google announced AlphaGenome Atlas, a resource that attempts to predict the consequences of every possible single-base variant in the human genome. The human genome is about 3 billion bases long, so trying the other three DNA bases that don’t appear in our reference genome means sending a total of 9 billion bases through AlphaGenome software.

AlphaGenome is designed to identify potential functions of non-coding DNA, which does not encode proteins but makes up the vast majority of the human genome. Some of this non-coding DNA is essential for controlling the activity of the protein-coding portion—it tells the cell where and when to make messenger RNAs, how to process them into mature protein-coding forms, and so on. But much of it appears to be little more than the remains of viruses and other molecular parasites.

Being able to identify the functional portion is very useful, as is having all the analysis done by a single software package. But until biologists start to use it heavily (assuming they do), it won’t be clear what AlphaGenome offers beyond what we could have gotten out of its training data.

Read full article

Comments

What readers should know

This TrueVitaHub page summarizes the news information available in the feed. For the complete publisher report, additional reporting, quotes and the latest updates, visit the original source.

Continue with the original source

Read the publisher's complete report for the full story and any subsequent updates.

Read Full Original Article
Share this story Help others discover this AI update.
in X
Source: Ars Technica AI • TrueVitaHub summary and available news coverage