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kmualim.bsky.social

@kmualim.bsky.social
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Andreas Gschwind @argschwind.bsky.social · 15/07/2026
Thrilled to share that our ENCODE enhancer–gene mapping paper is now out in Nature! An encyclopedia of human enhancer–gene regulatory interactions: www.nature.com/articles/s41... Thread 👇 1/
nature.com
An encyclopedia of human enhancer–gene regulatory interactions - Nature
An encyclopedia of more than 92 million enhancer–gene regulatory interactions created as part of the ENCODE4 project provides a valuable resource for future studies of gene regulation and human geneti...
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Reposted by @kmualim.bsky.social
Jesse Engreitz @jengreitz.bsky.social · 15/07/2026
An encyclopedia of enhancer-gene regulatory interactions — online today! nature.com/articles/s4158… Now with an improved model, expanded maps across 1400+ biosamples, larger validation CRISPR datasets, and guidance on applying the model 1/
nature.com
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Jesse Engreitz @jengreitz.bsky.social · 18/09/2025
Excited for a major milestone in our efforts to map enhancers and interpret variants in the human genome: The E2G Portal! e2g.stanford.edu This collates our predictions of enhancer-gene regulatory interactions across >1,600 cell types and tissues. Uses cases 👇 1/
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Reposted by @kmualim.bsky.social
Proceedings of the National Academy of Sciences @pnas.org · 02/04/2026
Biodiversity includes genetic diversity within species. A framework for predicting changes in genetic diversity under realistic habitat change scenarios suggests that species have already lost up to 13% of nucleotide genetic diversity. In PNAS: ow.ly/s0R150YCr5K
Mother and young Sumatran rhino (Dicerorhinus sumatrensis) at the Sumatran Rhino Sanctuary, Way Kambas National Park, Lampung, Indonesia. Dicerorhinus was one of the 29 plant and animal species whose population-scale genomic data was used to calibrate the model. Stock photo.
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