🧬1/ How do SHRs regulate transcriptional activity, and which components of the SHR-coregulator complex are essential for transcription? Our study, published in @NAR_Open, used a FACS-based CRISPR screen to dissect the GR complex. https://t.co/vR3wOXfh76 🧵
A genome-wide CRISPR screen in human prostate cancer cells reveals drivers of macrophage-mediated cell killing and positions AR as a tumor-intrinsic immunomodulator https://t.co/GYNJ8qoAA0 #bioRxiv
🧬1/ How do SHRs regulate transcriptional activity, and which components of the SHR-coregulator complex are essential for transcription? Our study, published in @NAR_Open, used a FACS-based CRISPR screen to dissect the GR complex. https://t.co/vR3wOXfh76 🧵
8/ A huge thank to my amazing promoter @zwartlab and co-promoter @Stefan_Prekovic for their invaluable guidance! Gratitude also goes to our fantastic collaborators @AHoutsmuller, @AltelaarM, and @NKI_nl and @oncodeinstitute, for their support in this research! #PAXIP1#STAG2
7/GR & PAXIP1 bind the genome, inducing enhancer-promoter interactions. PAXIP1KO reduces cohesin binding to GR-sites, impairing transcription. PAXIP1KO may disrupt insulator loops & thereby increase gene expression. A fascinating interplay between PAXIP1, STAG2 & GR!
@AmitK_Dash @zwartlab Thanks! In a parallel study, van Schie JMM et al. looked at the role of PAXIP1 in mitosis, showing also to be important for cohesin function throughout the cell cycle. here the pre-print: https://t.co/5ynBgD68zu
Check out our new preprint - https://t.co/12dDJEpOFo. Anyone interested in co-regulators of transcription factors should definitely take a look. This work was led by our fantastic PhD student @IsabelMayayo
Really happy to share our latest work! @zwartlab @Stefan_Prekovic Check this out if you would like to know more about CDK4/6 inhibition in breast cancer! Thanks to all the collaborators for their fantastic contribution to this work ! https://t.co/1QdSzEQOxl