Scientists have harnessed AI models to create synthetic CRISPR proteins that edit the genome more efficiently than those seen in nature go.nature.com/4f8AN3n
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Doudna Lab
Профиль VivelyNews from Jennifer Doudna's lab at UC Berkeley, Innovative Genomics Institute. Tweets from lab members and not Jennifer Doudna unless signed JD. Tweets represent personal views only. doudnalab.org
In a new Science study, researchers report the design of synthetic RNA-guided nucleases that match or exceed the activity of natural enzymes, revealing how structure-guided design can generate functional genome-editing proteins with substantially different sequences. https://scim.ag/45fbSFf
Happy to share the first preprint out of the Nomburg lab! Many aspects of cellular immunity are shared across the tree of life. Here, we show that some of these conserved aspects of cellular immunity are mirrored by conserved effectors of immune antagonism. Thread below! 1/15
bioRxiv MicrobiologyConserved folds enable immune antagonism across the tree of life https://www.biorxiv.org/content/10.64898/2026.07.21.739742v1
So excited to see our paper out in Science! Beyond grateful to my co-leads @petrskopintsev.bsky.social @evandeturk.bsky.social, all co-authors & collaborators, everyone in Doudna lab, and @innovativegenomics.bsky.social Being EsAIn in the DouDNA lab, it couldn't have been any other way ✨
Doudna LabOur AI-guided design of RNA-guided nucleases is now out in @science.org 💻🧬 We used structure and evolutionary data to generate minimal, active and divergent gene editors! www.science.org/doi/10.1126/... Congrats to @petrskopintsev.bsky.social @isabelesain.bsky.social @evandeturk.bsky.social & team!
Proud to present our work, published today in @science.org! My deepest gratitude to @isabelesain.bsky.social, @evandeturk.bsky.social, Jennifer and our collaborators in the Doudna, Cate, Banfield, and Jacobsen labs, and the @innovativegenomics.bsky.social! I hope you enjoy reading it! ✨
Doudna LabOur AI-guided design of RNA-guided nucleases is now out in @science.org 💻🧬 We used structure and evolutionary data to generate minimal, active and divergent gene editors! www.science.org/doi/10.1126/... Congrats to @petrskopintsev.bsky.social @isabelesain.bsky.social @evandeturk.bsky.social & team!
Out today in @science.org, Doudna lab researchers describe an #AI-assisted method for designing enhanced genome editors, testing close to 2000 in lab. Read more: innovativegenomics.org/news/ai-desi...
Our AI-guided design of RNA-guided nucleases is now out in @science.org 💻🧬 We used structure and evolutionary data to generate minimal, active and divergent gene editors! www.science.org/doi/10.1126/... Congrats to @petrskopintsev.bsky.social @isabelesain.bsky.social @evandeturk.bsky.social & team!
Targeting Cancer-Specific Mutations with RNA-Triggered Chromatin Shredding @nature.com @doudna-lab.bsky.social @gladstoneinst.bsky.social @jingkunzeng.bsky.social www.nature.com/articles/s41...
A team led by Jennifer Doudna developed an innovative chromatin-shredding technique shown to destroy cancer cells carrying a prevalent mutation while keeping healthy cells intact. @doudna-lab.bsky.social @innovativegenomics.bsky.social @ucsanfrancisco.bsky.social @ucberkeleyofficial.bsky.social
Our lab is proud to present our latest work harnessing Bridge Recombinase for genome-scale editing in diverse bacteria, microbiome editing, and programmable horizontal gene transfer.
bioRxiv Synthetic BiologyBridge recombinase enables versatile rewriting of bacterial genomes https://www.biorxiv.org/content/10.64898/2026.04.29.721476v1
In our new work published in @natbiomedeng.nature.com in collaboration with @theottlab.bsky.social and @doudna-lab.bsky.social, we introduce "interfering" guide RNAs (igRNA) for CRISPR-Cas13a that regulate enzyme activity after activation. Congrats to all the authors! www.nature.com/articles/s41...
A big challenge for CRISPR gene editing 🧬 is altering a high enough proportion of target cells in the body 🧪 So @doudna-lab.bsky.social have developed editors that can amplify themselves by spreading from cell to cell Comment from @gaetanburgio.bsky.social www.newscientist.com/article/2514...
Congratulations to Jennifer Doudna, 2018 #KavliPrize Nanoscience Laureate and CRISPR pioneer, for her recent election to the National Academy of Engineering! She's now one of a few people elected to all three academies @nationalacademies.org. Learn more: bit.ly/4s4k98m @doudna-lab.bsky.social
Today’s the day to make a BIG impact for the MCB community! 🌟 MCB faculty share—in their own words—why our initiatives matter. @doudna-lab.bsky.social @hariharanlab.bsky.social ✅ Read about our goals bit.ly/BigGiveMCB26goals ✅ Click 🔗 bit.ly/BigGiveMCB26 to donate
How do the ancestors of CRISPR-Cas unwind DNA and how can this lead to better genome editing? With our collaboration between @doudna-lab.bsky.social x @jacobsenucla.bsky.social x Zev Bryant's lab x @savagecatsonly.bsky.social we've uncovered the secrets behind TnpB's dynamics!
www.biorxiv.orgCheck out the latest episode of Rewriting the Code, featuring Jennifer Doudna and #SickleCell patient pioneer Victoria Gray who was cured with a #CRISPR-based treatment in a groundbreaking clinical trial: https://ow.ly/t6FY50XVNO7
Targeted delivery of genome editors in vivo - @doudna-lab.bsky.social @innovativegenomics.bsky.social go.nature.com/4qKp6Tb
New in Science Magazine Science Advances from the Doudna Lab, Rubin Lab and Cress Lab —Identification of proteins influencing #CRISPR-associated #transposases for enhanced #GenomeEditing. Read here: https://ow.ly/U0s450XS82n
During my postdoc in @therubinlab.bsky.social, @leosong.bsky.social and I aimed to make CRISPR-associated transposons more efficient for editing bacteria. Couldn’t have done it w/o a CAST of characters at IGI and beyond @innovativegenomics.bsky.social, @cresslab.bsky.social, @doudna-lab.bsky.social
Rubin LabHappy New Year from the Rubin Lab! 🎇 We're excited to start 2026 off with a fresh publication at @science.org Advances. Here, we identified a cast (😉) of host factors affecting VchCAST using genome-wide screens and validated their improvement or inhibition of CAST activity. (1/2)
🎺New paper alert🎺 Out now in Nature Chemical Biology from IGI's Jennifer Doudna (Doudna Lab) and collaborators: Temporal photoproximity labeling of ligand-activated EGFR neighborhoods using MultiMap Read here: https://ow.ly/izGo50XAkog
Excited to share our work designing genome editors with machine learning! 🧬💻 Huge thanks to @petrskopintsev.bsky.social @isabelesain.bsky.social @doudna-lab.bsky.social and all co-authors. Check out the thread for a summary of what we found 👇
Doudna Lab✨New preprint! 🧵1/4 Excited to share our work on AI-guided design of minimal RNA-guided nucleases. Amazing work by @petrskopintsev.bsky.social @isabelesain.bsky.social @evandeturk.bsky.social et al! Multi-lab collaboration @banfieldlab.bsky.social @jhdcate.bsky.social @jacobsenucla.bsky.social🧬 🔗👇