elevyLab

@ElevyLab

We discover, understand, and use principles of protein assembly in silico and in vivo

Vrijeme pridruživanja: studeni 2019.

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  1. 1. velj

    Soon there will be no need for a mouse and keyboard ... and google will be directly inside our head - cool and scary

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  2. 31. sij

    In this case, mechanism revealed! Pretty cool the idea that a chaperone threads a protein and recreates a situation similar to co-translational folding

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    30. sij

    My first paper is now out in Biorxiv! We analyzed the temporal sequence of SG disassembly by APEX proteomics and discovered it is regulated by SUMOylation, which is impaired in conditions modeling C9-ALS. Many thanks to our collaborators!

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    29. sij

    Our latest paper documents patterns in transcriptional error rates. When they are high, there is gene-level selection to reduce them in highly expressed genes. When they are low, they are equal across genes.

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    29. sij

    Our new preprint paper on Stress Granules disassembly and regulation by SUMOylation now in bioRxiv!

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    27. sij

    Mapping Functional Protein Neighborhoods in the Mouse Brain

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  7. 28. sij

    Probably the hottest yeast dataset to analyze now

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  8. 28. sij

    The next step is to keep track of interesting papers you find - I must say works great for us

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    27. sij

    Announcing the 2020 Laureates 🥇 🥇 🥇 of the Blavatnik Awards for Young Scientist in Emmanuel Levy Guy Rothblum

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  10. 27. sij
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  11. 26. sij
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  12. proslijedio/la je Tweet
    24. sij

    Finally out! Our experimental and theoretical work on noise buffering through liquid-liquid phase separation.

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  13. 24. sij

    Bringing proteins one step closer to becoming true LEGO blocs, amazing work!

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    23. sij

    Eleven tips for working with large data sets

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    23. sij

    New preprint! 🔥🔥🔥 how transcriptional networks evolve? Independent evolution of transcript abundance and gene regulatory dynamics

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  16. proslijedio/la je Tweet
    23. sij

    Thousands of new large viruses to study !!! Big time !!!

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  17. 20. sij

    Non-interacting surface patches (cold-spots or non-sticky spots) predict homologs *as effectively as* interface patches do. It's a bit like predicting friends based on things they don't like. Nice work!

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  18. proslijedio/la je Tweet
    16. sij

    Ever wondered why commonly used cerevisiae strains sporulate poorly? Widespread Prion-Based Control of Growth and Differentiation Strategies in Saccharomyces cerevisiae

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  19. proslijedio/la je Tweet
    16. sij

    Yessss > Correlative three-dimensional super-resolution and block-face electron microscopy of whole vitreously frozen cells

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  20. 17. sij

    A Non-amyloid Prion Particle that Activates a Heritable Gene Expression Program: Molecular Cell

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