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biohub

@biohub

Combining frontier AI & frontier biology to help scientists cure or prevent disease

Katılım Haziran 2017
606 Takip Edilen29.6K Takipçiler
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biohub
biohub@biohub·
In a series of 3 papers and preprints, we’re thrilled to share with you the working laser phase plate. In collaboration with research led by Holger Müller at UC Berkeley, this is a huge innovation in imaging to make small and faint objects inside cells visible. bit.ly/4vIPC1U
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biohub
biohub@biohub·
We are co-hosting re:AGENT—a 2-day build weekend for AI + science, Aug 15–16 in SF. Excited to help bring together engineers, scientists, computational biologists, founders, and AI researchers to build what scientific agents actually need. Applications close tomorrow, 7/30 at 12pm PT. Apply now → bit.ly/4beSQCE
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biohub
biohub@biohub·
Designing a protein binder used to mean years of lab experiments. ESMFold2 lets researchers run hundreds of thousands of designs computationally — then take only the most promising into the lab. We tested it across 5 targets in oncology and immunology. It worked. Download and build: bit.ly/4vmGX52
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biohub
biohub@biohub·
Designing a protein binder used to mean years of lab experiments. ESMFold2 lets researchers run hundreds of thousands of designs computationally—then take only the most promising into the lab. We tested it across 5 targets in oncology and immunology. It worked. Download and build: bit.ly/4vmGX52
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Prof. Nikolai Slavov
I am looking forward to speaking at the BioEngineering Conference Organized by the Chicago Biohub, Sept 17–18 in Chicago. The schedule is very interdisciplinary -- the kind of meeting I love attending!
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Pastor Soto
Pastor Soto@PastorSotoB1·
@biohub This is so impressive!!! Anywhere like a discussion chat where we share our qa and findings to learn in group?
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biohub
biohub@biohub·
Most of the proteins that make up life on Earth have never been studied. Not because scientists aren't curious — because the tools to explore them didn't exist. ESM Atlas is a new way in. Ask it a question in plain language and it reasons across 6.8 billion proteins to answer. Not a database you search. An agent you can explore with: bit.ly/4dJcF6G
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biohub
biohub@biohub·
The poster session was a highlight — early-career researchers got direct face time with senior scientists and speakers, a reminder that progress here depends on shared infrastructure and communities willing to tackle problems no single lab can solve alone. Thank you to all who attended!
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biohub
biohub@biohub·
There was a real sense that a field is being defined right now—and that Biohub is becoming the place convening it. The caliber of the science and scientists in the room made for some of the most genuinely energized conversations we've hosted.
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biohub
biohub@biohub·
🧵 Last week, we hosted our Immune Cell Engineering and Reprogramming Symposium in NYC — researchers from @UCSF, @MIT, @broadinstitute, @Cambridge_Uni, and more came together to explore what happens when immunology becomes an engineering discipline. Here's what stood out 👇
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biohub
biohub@biohub·
How hard was it to get the laser phase plate to work? Like “trying to hit a bullet with a bullet” hard, says Biohub scientist David Agard. Check out the latest episode of the Uncovered podcast from @cenmag ⤵️ cen.acs.org/analytical-che…
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biohub retweetledi
Ashton C Trotman-Grant
Ashton C Trotman-Grant@ATrotmanGrant·
We built a world model of protein biology. @awfderry & I are hosting a webinar on some of our team's interpretability work. We'll walk through the @biohub ESM Atlas live and show how to run the tools on your own proteins. Tue Jul 21, 1pm PT bit.ly/3SWpWAU biohub.ai/esm/protein/at…
Alex Rives@alexrives

Today we're announcing ESMFold2, an open scientific engine to power prediction, design, and discovery across protein biology. The new model delivers state of the art performance on protein interactions, especially antibodies, a critical modality for therapeutics. We have designed and validated miniprotein binders and single chain antibodies across five therapeutic targets that are important in cancer and immunology. We are seeing very high success rates, and affinities at levels consistent with therapeutic activity. We’re also releasing an atlas of 6.8 billion proteins, and 1.1 billion predicted structures. ESMFold2 is built on a state of the art language model that has been trained on billions of protein sequences. A world model of protein biology emerges through language modeling. We’ve used the techniques of mechanistic interpretability developed to understand large language models to understand the concepts ESM uses to represent proteins. The model’s representation space has a compositional organization of features across scales, levels of complexity, and abstraction, that reflects and mirrors the understanding of protein biology developed through a century of empirical science. This understanding emerges without prior knowledge, just from language modeling of protein sequences. Language models are becoming a powerful substrate to understand and program biology. The design of protein interactions is one of the most fundamental problems in biophysics, and has critical implications for the discovery of new medicines. A simple gradient based search with the model was able to discover high-affinity protein binders. I'm excited by the potential this has to accelerate basic science and the understanding of proteins. And especially for the new avenues it opens up for therapeutic design and medicine.

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biohub
biohub@biohub·
Antibody therapies now make up ~25% of all new FDA approvals. ESMFold2 is especially strong at modeling antibody-antigen interactions — hit rates of 15–29% for scFvs across five targets. No target-specific tuning. bit.ly/4vmGX52
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biohub
biohub@biohub·
Introducing RNAquarium 🐟: a discovery engine built to scale across any species with public data, extracting multi-scale and multi-organism biology from sequences that already exist and underscoring the value of bulk RNA-seq data for modeling 🧬 bit.ly/4wqLRPD
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biohub
biohub@biohub·
🚨 New preprint: We reprocessed 77k zebrafish RNA-seq datasets from across the global research community and found hidden viruses in 10% of them—including a fish virus whose proteins are 91% identical to human Influenza B—then built a generalizable pipeline. bit.ly/4vxFF72
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