www.bcm.edu/about-us/lea...
www.bcm.edu/about-us/lea...
Some notable changes:
1. Support for ambiguous bases with 4bit encoding
2. Support for sequence headers
3. Improved API
www.biorxiv.org/content/10.1...
Some notable changes:
1. Support for ambiguous bases with 4bit encoding
2. Support for sequence headers
3. Improved API
www.biorxiv.org/content/10.1...
Serge Saxonov: thebioreport.podbean.com/e/transformi...
Serge Saxonov: thebioreport.podbean.com/e/transformi...
Today, in a new paper published in @science.org , researchers from Arc's Hsu lab show that bridge recombinase technology is capable of large-scale genomic rearrangements in human cells.
Today, in a new paper published in @science.org , researchers from Arc's Hsu lab show that bridge recombinase technology is capable of large-scale genomic rearrangements in human cells.
Germinal produces functional nanobodies in just dozens of tests, making custom antibody design more accessible than ever before.
Germinal produces functional nanobodies in just dozens of tests, making custom antibody design more accessible than ever before.
Today, we share our preprint “Generative design of novel bacteriophages with genome language models”, where we validate the first, functional AI-generated genomes 🧵
Today, we share our preprint “Generative design of novel bacteriophages with genome language models”, where we validate the first, functional AI-generated genomes 🧵
Leveraging Evo 1 & Evo 2, they generated whole genome sequences, resulting in 16 viable phages with distinct genomic architectures.
Leveraging Evo 1 & Evo 2, they generated whole genome sequences, resulting in 16 viable phages with distinct genomic architectures.
www.nature.com/naturecareer...
Please repost!
www.nature.com/naturecareer...
Please repost!
arcinstitute.org/news/behind-...
arcinstitute.org/news/behind-...