How does an mRNA become “cytoplasmic” after leaving the nucleus?
Our new preprint identifies PAIP1 as a factor that couples mRNA export to poly(A)-binding protein exchange, mRNP maturation, poly(A)-tail control, and early development.
https://t.co/W9nEdCZigp
Curious about “DEAD-box ATPases as regulators of biomolecular condensates and membrane-less organelles”? We proudly present the first review from the lab, and it was great fun reading & writing with @OverwijnDaan!
https://t.co/onlsfFKZlI
I am honored to have a small contribution to this team and paper that is online now! @moritzhunkeler@fischerlab1 Thanks everybody for the awesome time I had in the Fischer lab!!!
Almost one full year after the preprint (🚽), we can finally present the final version of our HUWE1 manuscript!
Solenoid architecture of HUWE1 contributes to ligase activity and substrate recognition https://t.co/1mejGogt18
We welcome @MariaHondele (@biozentrum, @UniBasel_en ) as a new Associate Member of the NCCR RNA & Disease. Her lab studies the formation and function of membraneless organelles, especially ones associated with RNA processing.
Hondele lab website:
https://t.co/i4W7xGBjjN
We are extremely excited to share our recent work mapping the degradable kinome! Here, we provide chemistry and global proteomics for 91 kinase-targeting degrader molecules demonstrating degradation of over 200 different protein kinases. @CellCellPress
https://t.co/8KgG4GdDUs