The Woo Lab was proud to hood the three PhD’s of the class of 2026! Cheers 🥂 and congratulations 🎉 to Dr. Vanessa Dippon, Dr. Alison Mody, and Dr. Hannah Lloyd! 🫶🏼
The Woo Lab
@thewoolab.bsky.social
Official Account for Christina Woo’s Lab at Harvard CCB| chembio, protein mods, chemoproteomics, TPD | Student-run account | posts by Christina signed CMW
We hope you all enjoyed Christina's talk as much as we enjoy sharing our science! Seems like it was a packed house 🫡
We are very happy that Christina Woo (@thewoolab.bsky.social) visited us for a very well-attended LED3 Lecture. She talked about the importance of C-terminal cyclic imides as natural #degrons for protein degradation with important implications for targeted protein degradation. #TPD #ChemBio #ChemSky
Roses are red, GlcNAc is blue, sugar is sweet, and we want YOU to read our latest in @natcomms.nature.com — where we identify small-molecules that disrupt OGlcNAc homeostasis via RNA splicing. Congrats Steven (@scheng23.bsky.social) and all the authors! 🟦🍭❤️ www.nature.com/articles/s41...
Small molecule splicing modulators that disrupt O-GlcNAc homeostasis - Nature Communications
Authors report drug repurposing screens against O-GlcNAc cycling enzymes, finding kinase inhibitors that act as splicing modulators to disrupt O-GlcNAc homeostasis and downregulate OGT and OGA. These ...
nature.com
Another Woo Lab Dr. is in: Congrats to our newest Ph.D, Dr. Alison Mody!🫡 Cheers to a wonderful Ph.D. and a sweet (pun intended) thesis talk, all the world’s alpacas are celebrating with you in spirit 🦙🩵🟦💐🎉
we hope you enjoyed this paper as much as we do! 😉😘 if you’re interested in working with an allosteric ligand, reach out to Prof. Woo 🫡 we’re more than happy to share 🙌🏼🩵✨ #thefutureisallostery #CRBN #TPD
Pour a glass of champagne AND red Bordeaux—Our newest work with GSK @scripps.edu is out in @nature.com! Here we describe SB-405483, the first allosteric CRBN ligand which potentiates neosubstrate degradation. Congrats Vanessa and all authors! 🍷💫💐 www.nature.com/articles/s41...
Exciting new work from @thewoolab.bsky.social just out @nature.com www.nature.com/articles/s41...
Identification of an allosteric site on the E3 ligase adapter cereblon - Nature
An allosteric site on the E3 ligase adapter cereblon can be targeted to modulate the efficacy of cereblon in targeted protein degradation applications.
nature.com
Pour a glass of champagne AND red Bordeaux—Our newest work with GSK @scripps.edu is out in @nature.com! Here we describe SB-405483, the first allosteric CRBN ligand which potentiates neosubstrate degradation. Congrats Vanessa and all authors! 🍷💫💐 www.nature.com/articles/s41...
He’s gonna be gonna be golden! ⭐️ While we’re sad that our beloved postdoc, Dr. Zhenguang Zhao, is leaving, we’re excited for his next steps as he becomes Prof. Zhao at China Pharmaceutical University! 🤩✨🌟
wow! Thanks for the shoutout 🥹 Hopefully our papers in the coming year will continue to impress 😉 stay tuned!!
Cereblon is one of the most used E3 ligases for degraders. After showing that C-terminal cyclic imids on proteins are ligands for cereblon, the @thewoolab.bsky.social showed that PCMT1 can install them on asparagines via SAM-dependent methyl ester formation. (5/12) www.nature.com/articles/s41...
Last paper post of the year! Amazing @natchembio.nature.com paper by @thewoolab.bsky.social. PCMT1 installs cyclic imides at the C-terminus of proteins via SAM-dependent methyl ester formation, which then leads to degradation using cereblon. www.nature.com/articles/s41... #ChemSky #ChemBio #TPD
PCMT1 generates the C-terminal cyclic imide degron on CRBN substrates - Nature Chemical Biology
The enzyme PCMT1 was found to install a C-terminal cyclic imide modification on proteins that marks them for degradation by CRBN, uncovering a conserved protein turnover pathway with implications in m...
nature.com
We’re popping the champagne prior to New Year’s because our work on how PCMT1 enzymatically forms the CRBN degron is officially out in Nature ChemBio🥂!! Congrats to Zhenguang, Wenqing, Ethan, Shiyun, and all the authors! 🎉💜🍾 www.nature.com/articles/s41...
PCMT1 generates the C-terminal cyclic imide degron on CRBN substrates - Nature Chemical Biology
The enzyme PCMT1 was found to install a C-terminal cyclic imide modification on proteins that marks them for degradation by CRBN, uncovering a conserved protein turnover pathway with implications in m...
nature.com
Let us take you to the land of sweets with our latest work in @CellChemBiol ! Excited to share this proximity-induced target O-GlcNAc approach, where we uncover transcriptional effects of O-GlcNAc. Congrats to Alison and Dan! 🟦🍭🍬🎵❄️https://sciencedirect.com/science/article/pii/S2451945625003538
After some ~technical difficulties~ the Woo Lab is officially (back) on BlueSky!! Apologies for ignoring all the love for the past month 😅 Excited to share some exciting science on this platform 😉✨💜