Assistant Member @MSKCC
Formerly post-doc @MIT
Formerly-formerly PhD @MRC_LMB
Formerly formerly-formerly Otago Uni
Kiwi 🥝 🇳🇿
https://wilkinsonlab.bio/
The hugest shoutout to @kedmonds.bsky.social for her HEROIC engineering and optimisation (+ birb drawing 🐦🥚)
Also to Hongyu Chen and Dangliang Liu for RNA chemistry, Feng Zhang for fearless leadership, and all the amazing authors who made this possible. (6/n)
The hugest shoutout to @kedmonds.bsky.social for her HEROIC engineering and optimisation (+ birb drawing 🐦🥚)
Also to Hongyu Chen and Dangliang Liu for RNA chemistry, Feng Zhang for fearless leadership, and all the amazing authors who made this possible. (6/n)
Combined with LNP delivery, this boosted integration efficiency to >80% in multiple human cell lines, all with an RNA system. Which is kinda nuts. (5/n)
Combined with LNP delivery, this boosted integration efficiency to >80% in multiple human cell lines, all with an RNA system. Which is kinda nuts. (5/n)
She then defined the minimal R2 elements required for integration, leading to a compact, efficient “mini donor”. (4/n)
She then defined the minimal R2 elements required for integration, leading to a compact, efficient “mini donor”. (4/n)
This natural system inspired our design: we thought the rDNA could be a good 'safe harbour' for transgenes. (2/n)
This natural system inspired our design: we thought the rDNA could be a good 'safe harbour' for transgenes. (2/n)
If you you love genome editing...
Or if you just like random bird animations,
we have the paper for you!
We (@kedmonds.bsky.social et al) are happy to share our work turning a songbird retrotransposon into a genome editing tool. 🐣 (1/n)
If you you love genome editing...
Or if you just like random bird animations,
we have the paper for you!
We (@kedmonds.bsky.social et al) are happy to share our work turning a songbird retrotransposon into a genome editing tool. 🐣 (1/n)
We decided to call them TIGR-Tas systems 🐯
We decided to call them TIGR-Tas systems 🐯