Xiaolong Dong (@xiaolong_dong) 's Twitter Profile
Xiaolong Dong

@xiaolong_dong

RNAs

ID: 1253005730485067777

calendar_today22-04-2020 17:00:33

102 Tweet

148 Followers

470 Following

The RNA Institute (@thernainstitute) 's Twitter Profile Photo

Super excited to share the news about our beloved Professor Marlene Belfort on being awarded the 2023 RNA Society Lifetime Achievement in Science Award! Cherry on top moment here on #InternationalWomensDay2023

Super excited to share the news about our beloved Professor Marlene Belfort on being awarded the 2023 RNA Society Lifetime Achievement in Science Award!

Cherry on top moment here on #InternationalWomensDay2023
Max Wilkinson (@maxewilkinson) 's Twitter Profile Photo

How do LINE family retrotransposons jump around? Can we reprogram retrotransposons? What does this have to do with Rum and Raisin? Answers here and below!

Feng Zhang (@zhangf) 's Twitter Profile Photo

Our genomes are littered with *junk* DNA known as LINE retrotransposons, which are powerful enzymes that can insert DNA into the genome. We are excited to report the structure of the LINE family member R2 and ways to engineer it for programmable gene insertion. Congratulations to

Kevin Zhao (@kevintzhao93) 's Twitter Profile Photo

Excited to share with everyone our study on precise targeted DNA insertions in plants! This technology and others will further enable precision breeding to develop sustainable agricultural products and climate resilient crops. Congrats to all co-authors and Caixia Gao !!🧬🌱🌾

Megan Ken MD PhD (@magnetic_megan) 's Twitter Profile Photo

It's been a week folks! The project that defined my PhD has been published today in nature: nature.com/articles/s4158…. Congrats to everyone involved in this work and a huge thank you to Hashim and Dan for their mentorship!! Also, my name is not a typo ! 1/2

Davide Michieletto (@dmichiel1) 's Twitter Profile Photo

🚨1st paper from my 1st PhD student Cleis 🥳 We discover that DNA loops are "geometric catalysts" for DNA integration and study how 1D/3D loop organisation affect integration site-selection in DNA and chromatin. #transposons #hiv #proudPI biorxiv.org/content/10.110…

🚨1st paper from my 1st PhD student Cleis 🥳
We discover that DNA loops are "geometric catalysts" for DNA integration and study how 1D/3D loop organisation affect integration site-selection in DNA and chromatin.
#transposons #hiv #proudPI
biorxiv.org/content/10.110…
Jörg Vogel (@joerglab) 's Twitter Profile Photo

What will be the best modality for programmable RNA antibiotics? In our new work, we’ve compared half a dozen RNA, DNA and analogous molecules, looking at how good they are at suppressing an essential gene/mRNA in Salmonella. Encouraging results! biorxiv.org/content/10.110…

BevilacquaLab (@phil_bevilacqua) 's Twitter Profile Photo

Pleased to share our new article "RNA folding studies inside peptide-rich droplets reveal roles of modified nucleosides at the origin of life" out at Science Advances. Collaboration with Keating lab. science.org/doi/full/10.11…

Laura Sepp-Lorenzino (@laurasepplore) 's Twitter Profile Photo

We did it! FDA IND clearance of NTLA-2001! I’m so proud of our team. Congrats to all! A big thank you to our clinical trial participants and sites, as well as our investigators who are contributing to the advancement of our therapies. The future looks bright! #OneIntellia

Sebastian Kadener (@skadener) 's Twitter Profile Photo

Super excited to share our new preprint! We show: - circRNAs are super stable in the brain - that's why they accumulate with age in the brain - they can even be used as life experience markers! kudos to all the authors K. Kirio, Inés Lucía Patop et al. biorxiv.org/content/10.110…

Max Wilkinson (@maxewilkinson) 's Twitter Profile Photo

My favourite discovery ever has just come online. Can I please tell you about some seriously wacky molecular biology? The story starts with a reverse transcriptase that SOMEHOW defends bacteria from viruses. (👇 I recommend sound ON for the video 🎹) 1/

Ruben Gonzalez (@rubenlgonzalez) 's Twitter Profile Photo

Our latest work is out in nature today! Using smFRET, we directly visualized recruitment of the eIF4F complex to the 5' cap of eukaryotic mRNAs and formation of an activated mRNA. Our findings reveal new and surprising roles for each eIF4F component. 1/3 nature.com/articles/s4158…

Our latest work is out in <a href="/Nature/">nature</a> today! Using smFRET, we directly visualized recruitment of the eIF4F complex to the 5' cap of eukaryotic mRNAs and formation of an activated mRNA. Our findings reveal new and surprising roles for each eIF4F component. 1/3 nature.com/articles/s4158…