forms.gle/XsGHDCyHtczV...
forms.gle/XsGHDCyHtczV...
go.nature.com/46bhOAv
go.nature.com/46bhOAv
De novo designs peptide ligands for proteins. It generated MDM2 binders (nM affinity) and WDR5 binders (sub-µM affinity), with potency improved via stapling.
www.nature.com/articles/s41...
www.nature.com/articles/s41...
github.com/martinpacesa...
github.com/martinpacesa...
Tested in some bacterial systems too! Designs so far are short peptides or mini-domains. Looking forward to long/full protein design ahead! 🧪 #microsky
www.nature.com/articles/s41...
Tested in some bacterial systems too! Designs so far are short peptides or mini-domains. Looking forward to long/full protein design ahead! 🧪 #microsky
www.nature.com/articles/s41...
Learn more here: https://buff.ly/3CEqPpU
#SBGrid #SBGridSoftware #StructuralBiology
Learn more here: https://buff.ly/3CEqPpU
#SBGrid #SBGridSoftware #StructuralBiology
www.healthtech.com/the-chain/ma...
www.healthtech.com/the-chain/ma...
#ProteinDJ #BindCraft #ProteinDesign @wehi-research.bsky.social
#ProteinDJ #BindCraft #ProteinDesign @wehi-research.bsky.social
forms.gle/XsGHDCyHtczV...
forms.gle/XsGHDCyHtczV...
BindCraft displays perfectly how AI-based tools can be used to accelerate biological research (and clinical applications). I think this is a must-read paper.
www.nature.com/articles/s41...
BindCraft displays perfectly how AI-based tools can be used to accelerate biological research (and clinical applications). I think this is a must-read paper.
"Code will be released soon."
"Code will be released soon."
www.biorxiv.org/content/10.1...
www.biorxiv.org/content/10.1...
New @biorxivpreprint.bsky.social by the group of @sebastianpomplun.bsky.social of our @led3hub.bsky.social!
www.biorxiv.org/content/10.1...
Cc: @leidenscience.bsky.social, @unileiden.bsky.social
New @biorxivpreprint.bsky.social by the group of @sebastianpomplun.bsky.social of our @led3hub.bsky.social!
www.biorxiv.org/content/10.1...
Cc: @leidenscience.bsky.social, @unileiden.bsky.social
github.com/martinpacesa...
github.com/martinpacesa...
Or is it? 😈
Genie 3 is out! Our latest protein design model achieves SoTA results for binder design and motif scaffolding, greatly improving on BindCraft and Proteina-Complexa.
It does so using all-atom SE(3)-equivariance based on a branched polymer representation👇
Or is it? 😈
Genie 3 is out! Our latest protein design model achieves SoTA results for binder design and motif scaffolding, greatly improving on BindCraft and Proteina-Complexa.
It does so using all-atom SE(3)-equivariance based on a branched polymer representation👇
We did synthesize all binder genes with Twist ❤️
“One-shot design of functional protein binders with BindCraft”
We did synthesize all binder genes with Twist ❤️
github.com/martinpacesa...
github.com/martinpacesa...
Also great external validation of BindCraft, 7/36 binders bound, two with 0.8 and 6 nM affinity! Congratulations on the great work!
Check out our Cell-Free 2-Hybrid approach (CF2H)
Full post: tinyurl.com/48cz5nb6
Preprint: www.biorxiv.org/cgi/content/...
Also great external validation of BindCraft, 7/36 binders bound, two with 0.8 and 6 nM affinity! Congratulations on the great work!
The open-source pipeline for de novo protein binder design achieves significantly improved success rates with nanomolar affinity and therapeutic potential from gene editing to allergens.
Read more at GEN:
www.genengnews.com/topics/artif...
The open-source pipeline for de novo protein binder design achieves significantly improved success rates with nanomolar affinity and therapeutic potential from gene editing to allergens.
Read more at GEN:
www.genengnews.com/topics/artif...