Pascal Vos (@pascal_d_vos) 's Twitter Profile
Pascal Vos

@pascal_d_vos

Research Associate | Laboratory of Synthetic Biology and Drug Discovery | Harry Perkins Institute of Medical Research | Curtin University.

ID: 803214815997005824

calendar_today28-11-2016 12:31:49

14 Tweet

27 Followers

27 Following

Oliver Rackham (@therackhamlab) 's Twitter Profile Photo

What happens when the master regulators of RNA regulate each other? Check out “Modulation of miRNA function by natural and synthetic RNA‑binding proteins in cancer”. link.springer.com/article/10.100… rdcu.be/bFGup #miRNA #SynBio #RNA #cancer

What happens when the master regulators of RNA regulate each other?
Check out “Modulation of miRNA function by natural and synthetic RNA‑binding proteins in cancer”. 
link.springer.com/article/10.100…
rdcu.be/bFGup
#miRNA #SynBio #RNA #cancer
Pascal Vos (@pascal_d_vos) 's Twitter Profile Photo

What happens when the master regulators of RNA regulate each other? Check out “Modulation of miRNA function by natural and synthetic RNA‑binding proteins in cancer”. link.springer.com/article/10.100… rdcu.be/bFGup #miRNA #SynBio #RNA #cancer

What happens when the master regulators of RNA regulate each other?
Check out “Modulation of miRNA function by natural and synthetic RNA‑binding proteins in cancer”.
link.springer.com/article/10.100…
rdcu.be/bFGup
#miRNA #SynBio #RNA #cancer
Pascal Vos (@pascal_d_vos) 's Twitter Profile Photo

My first research paper from my PhD is officially out now! Cas9 is now officially gone into hyperdrive with our newly designed TurboCas9. Oliver Rackham Aleksandra Filipovska nature.com/articles/s4146… #Cas9 #Synbio #

Oliver Rackham (@therackhamlab) 's Twitter Profile Photo

Ready to shred DNA with a hyperactive Cas9? We used artificial genetic circuits in yeast to test computationally designed Cas9 variants and found TurboCas9 that can introduce large and diverse indels in mammalian cells. Free to read Nature Communications: rdcu.be/cOFkX #CRISPR

Ready to shred DNA with a hyperactive Cas9?
We used artificial genetic circuits in yeast to test computationally designed Cas9 variants and found TurboCas9 that can introduce large and diverse indels in mammalian cells.
Free to read <a href="/NatureComms/">Nature Communications</a>: rdcu.be/cOFkX
#CRISPR
Oliver Rackham (@therackhamlab) 's Twitter Profile Photo

Frankenstein Cas9! Here we review the latest developments in engineering Cas9 for improved gene editing portlandpress.com/biochemsoctran… #CRISPR #SynBio

Frankenstein Cas9!
Here we review the latest developments in engineering Cas9 for improved gene editing
portlandpress.com/biochemsoctran…
#CRISPR
#SynBio
Portland Press (@pppublishing) 's Twitter Profile Photo

Trick or Treat? Oliver Rackham explore Frankenstein Cas9 variants and the latest developments in engineering Cas9 for improved gene editing in a new #BiochemSocTrans mini review doi.org/10.1042/BST202…

Trick or Treat? <a href="/TheRackhamLab/">Oliver Rackham</a> explore Frankenstein Cas9 variants and the latest developments in engineering Cas9 for improved gene editing in a new #BiochemSocTrans mini review doi.org/10.1042/BST202…
SBAPerth (@sbaperth) 's Twitter Profile Photo

Join us ⭐️February 10th⭐️ for "CRISPR research in Western Australia" Clara Woodcraft and Pascal Vos will present their work on #synbio tool #CRISPR 🧬 In-person attendees will have the chance to win a prize sponsored by Decode Science 🏆 Register 👇 eventbrite.com.au/e/crispr-resea…

Join us ⭐️February 10th⭐️ for "CRISPR research in Western Australia" 

<a href="/woodcraft_c/">Clara Woodcraft</a> and <a href="/pascal_d_vos/">Pascal Vos</a> will present their work on #synbio tool #CRISPR 🧬

In-person attendees will have the chance to win a prize sponsored by <a href="/Decode_Science/">Decode Science</a> 🏆 

Register 👇
eventbrite.com.au/e/crispr-resea…
Oliver Rackham (@therackhamlab) 's Twitter Profile Photo

Why are there so many tRNA genes in mammalian genomes? Knockout of the seven-membered phenylalanine tRNA gene family in mice using CRISPR reveals that multiple genes are required for both development and balanced translation. rdcu.be/dadEz #RNA #translation

Why are there so many tRNA genes in mammalian genomes?

Knockout of the seven-membered phenylalanine tRNA gene family in mice using CRISPR reveals that multiple genes are required for both development and balanced translation.

rdcu.be/dadEz

#RNA #translation
Oliver Rackham (@therackhamlab) 's Twitter Profile Photo

“I am a part of all that I have met” – Ulysses; Alfred Tennyson CRISPR screening, volumetric EM and multi-omics reveal the highly connected nature of organelles. Defects in peroxisomes, Golgi and the ER converge on mitochondria via the lipidome. nature.com/articles/s4155…

“I am a part of all that I have met” – Ulysses; Alfred Tennyson

CRISPR screening, volumetric EM and multi-omics reveal the highly connected nature of organelles.

Defects in peroxisomes, Golgi and the ER converge on mitochondria via the lipidome.

nature.com/articles/s4155…
Oliver Rackham (@therackhamlab) 's Twitter Profile Photo

High-fidelity Cas9 variants that prevent off-target cleavage typically reduce on-target activity. Adding TurboCas9 mutations to these enzymes can improve activity while maintaining off-target fidelity. Cell Reports Methods cell.com/cell-reports-m…

High-fidelity Cas9 variants that prevent off-target cleavage typically reduce on-target activity. Adding TurboCas9 mutations to these enzymes can improve activity while maintaining off-target fidelity. <a href="/CellRepMethods/">Cell Reports Methods</a>
cell.com/cell-reports-m…
Oliver Rackham (@therackhamlab) 's Twitter Profile Photo

Better CRISPR base editors! More efficient nicking of the unedited DNA strand improves the ability to edit hard to reach bases. ACS Synthetic Bio pubs.acs.org/doi/10.1021/ac…

Better CRISPR base editors!
More efficient nicking of the unedited DNA strand improves the ability to edit hard to reach bases.
<a href="/ACSSynBio/">ACS Synthetic Bio</a>
pubs.acs.org/doi/10.1021/ac…