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Using single-H1 imaging and computational modeling, we show that most H1 behaves like a liquid inside chromatin domains rather than binding stably to nucleosomes as in the textbook model:
www.science.org/doi/10.1126/...
Congrats
@masaashimazoe.bsky.social & all contributors! ๐ŸŽ‰ 2/

1 week ago 12 3 1 0

Congratulations! Fantastic paper!

1 week ago 0 0 1 0

I am not afraid to say it: this is the most fundamental advance in our understanding of chromatin structure since the zig-zag fiber model. Congratulations!

1 week ago 5 2 1 0
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Direct visualization and tracing of chromatin folding in the Drosophila embryo - The EMBO Journal Chromatin organization, through the assembly of DNA with histones and the folding of nucleosome chains, regulates DNA accessibility for transcription, DNA replication and repair. Although models deriv...

We are in EMBO J. See DNA and non-octameric nucleosome-like particles in situ

link.springer.com/article/10.1...

2 months ago 41 16 0 2
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Template Learning: Deep learning with domain randomization for particle picking in cryo-electron tomography - Nature Communications Particle picking is a key bottleneck in bridging structural and cell biology with cryo-electron tomography. Here, authors develop Template Learning, using domain-randomized simulations to train deep l...

Generate synthetic cryo-ET data and train your model for particle picking in real data.
Impressive work by Mohamad Harastani:
www.nature.com/articles/s41...

6 months ago 6 2 1 0

Thanks a lot! Congrats to your EMBO J paper!

1 year ago 2 0 0 0
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A question for the experts: Can you recognize nucleosomes and linker DNA in this data?
Find an updated version of our manuscript in
www.biorxiv.org/content/10.1...

1 year ago 12 6 2 0
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