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New online! Computational design of sequence-specific DNA-binding proteins bit.ly/461bxaB

NatureSMB's tweet image. New online! Computational design of sequence-specific DNA-binding proteins bit.ly/461bxaB

5 papers all computational biologists should read 🧵 1. A Quick Guide to Organizing Computational Biology Projects journals.plos.org/ploscompbiol/a…

tangming2005's tweet image. 5 papers all computational biologists should read 🧵

1. A Quick Guide to Organizing Computational Biology Projects
journals.plos.org/ploscompbiol/a…

🎉🎉🎉 Professor Jia-huai Wang's new book, Proteins: A Structural Biology Perspective, is now out from Academic Press! 📖 Dive into the evolution of structural determination and AlphaFold! #StructuralBiology #Proteins #AlphaFold amazon.com/Proteins-Struc…


As part of our #CP50 Anniversary, @CellCellPress recently published a Perspective on the #NobelPrize in Chemistry winning topic of computational protein design. Read it below: "De novo protein design—From new structures to programmable functions" cell.com/cell/fulltext/…

CellPressNews's tweet image. As part of our #CP50 Anniversary, @CellCellPress recently published a Perspective on the #NobelPrize in Chemistry winning topic of computational protein design. Read it below:

"De novo protein design—From new structures to programmable functions" cell.com/cell/fulltext/…

A new computational approach to de novo protein design enables the creation of drug-binding proteins with accurate design and prediction binding energy and specificity, researchers report in Science. 📄: scim.ag/6FT

ScienceMagazine's tweet image. A new computational approach to de novo protein design enables the creation of drug-binding proteins with accurate design and prediction binding energy and specificity, researchers report in Science.

📄: scim.ag/6FT

A new computational approach to de novo protein design enables the creation of drug-binding proteins with accurate design and prediction binding energy and specificity, researchers report in Science. 📄: scim.ag/6Ad

ScienceMagazine's tweet image. A new computational approach to de novo protein design enables the creation of drug-binding proteins with accurate design and prediction binding energy and specificity, researchers report in Science.

📄: scim.ag/6Ad

Computational Neuroscience: Building a mathematical model of the brain. elifesciences.org/articles/96231…

eLife's tweet image. Computational Neuroscience: Building a mathematical model of the brain. elifesciences.org/articles/96231…

1/ 5 papers all computational biologists should read: 1. A Quick Guide to Organizing Computational Biology Projects buff.ly/2YiLMTc


The February issue, with a focus on protein engineering, is live nature.com/nbt/volumes/42… Our cover shows the three data types key to machine learning for functional protein design: structure, sequence and labels, from a Review by Notin et al. go.nature.com/49EPi9x

NatureBiotech's tweet image. The February issue, with a focus on protein engineering, is live nature.com/nbt/volumes/42…

Our cover shows the three data types key to machine learning for functional protein design: structure, sequence and labels, from a Review by Notin et al. go.nature.com/49EPi9x

AlphaFold and the future of structural biology: This editorial acknowledges the transformative impact of new machine-learning methods, such as the use of AlphaFold, but also makes the case for the continuing need for experimental structural biology. journals.iucr.org/d/issues/2023/…


Our review of recent developments in computational structural biology is out in @COSB_CRSB: tinyurl.com/MBCOSB. For a tweetorial from @_BalintMeszaros please see tinyurl.com/COSBtweet. Grateful for the support of @StJudeResearch and @StJudeStructBio.

m_madan_babu's tweet image. Our review of recent developments in computational structural biology is out in @COSB_CRSB: tinyurl.com/MBCOSB. For a tweetorial from @_BalintMeszaros please see  tinyurl.com/COSBtweet. Grateful for the support of @StJudeResearch and @StJudeStructBio.

🌟 Our new Computational Structural Biology Conference! We're committed to making this a must-attend biennial event in the field! 🧬 ✅Register & submit abstract👉s.embl.org/csb23-01 🔬#EMBOComp3D #ComputationalStructuralBiology #Bioinformatics #StructuralBiology 1/4

jankosinski's tweet image. 🌟 Our new Computational Structural Biology Conference! We're committed to making this a must-attend biennial event in the field! 🧬

✅Register & submit abstract👉s.embl.org/csb23-01

🔬#EMBOComp3D #ComputationalStructuralBiology #Bioinformatics #StructuralBiology 1/4

Reproducible image handling and analysis – commentary by #BioImageAnalysis experts @cmci_ & @SimonFlyvbjerg outlines importance of systematic processing description for proper interpretation of #microscopy data embopress.org/doi/full/10.15…

embojournal's tweet image. Reproducible image handling and analysis – commentary by #BioImageAnalysis experts @cmci_ & @SimonFlyvbjerg outlines importance of systematic processing description for proper interpretation of #microscopy data 
embopress.org/doi/full/10.15…

A new computational microscopy technique could make it easier to study live cells and human tissues without using fluorescent labels elifesciences.org/digests/55502/…


Nature Computational Science is a new multidisciplinary journal focused on the development and use of computational techniques to address complex problems across a range of disciplines. Visit the website to find out more about the journal and how to submit your own research.


#CryoSPARC Non-uniform refinement: Adaptive regularization improves single particle #cryoEM reconstruction 🔗 @biorxivpreprint is now online! biorxiv.org/content/10.110…


Our editors welcome studies that use computational methods, models and software to provide important biological insights in all areas of the life sciences elifesciences.org/subjects/compu…


Droplet-based combinatorial indexing for massive-scale single-cell chromatin accessibility go.nature.com/2xaRiGf

NatureBiotech's tweet image. Droplet-based combinatorial indexing for massive-scale single-cell chromatin accessibility go.nature.com/2xaRiGf

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