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@ox.ac.uk @davieslab.bsky.social @jojdavies.bsky.social @medsci.ox.ac.uk
The breakthrough helps us understand how genetic differences lead to disease and opens up fresh routes for drug discovery 👇
shorturl.at/nQjsx
@jojdavies.bsky.social @imm.ox.ac.uk @medsci.ox.ac.uk
Read the full story below 👇
@ox.ac.uk @davieslab.bsky.social @jojdavies.bsky.social @medsci.ox.ac.uk
BRD4-NUT forms liquid-like condensates that locally constrain nucleosomes via BRD4-mediated crosslinking— physical control of #chromatin by #LLPS transcription condensates. @semeigazin.bsky.social @katsuminami.bsky.social @masaashimazoe.bsky.social
BRD4-NUT forms liquid-like condensates that locally constrain nucleosomes via BRD4-mediated crosslinking— physical control of #chromatin by #LLPS transcription condensates. @semeigazin.bsky.social @katsuminami.bsky.social @masaashimazoe.bsky.social
*Platelets sequester cell free DNA, including free fetal and tumour-derived DNA*
Tweetorial from @l-cmurphy.bsky.social below. Check out the news feature science.org/content/arti... and terrific editorial from Dennis Lo #platelets_in_the_limelight
*Platelets sequester cell free DNA, including free fetal and tumour-derived DNA*
Tweetorial from @l-cmurphy.bsky.social below. Check out the news feature science.org/content/arti... and terrific editorial from Dennis Lo #platelets_in_the_limelight
We created a team of AI agents to mirror my Stanford lab 🤖. Led by a PI agent, the AI scientists ran their own group meetings and discovered effective binders to new CoVID variants that we validated.
We created a team of AI agents to mirror my Stanford lab 🤖. Led by a PI agent, the AI scientists ran their own group meetings and discovered effective binders to new CoVID variants that we validated.