📣New in #JEV📣EVs mediate diverse physiology but the basis of their functions is enigmatic. Logan et al. begin to uncover the molecular underpinnings of EV biology using the powerful model organism S. cerevisiae by studying their role in thermotolerance. https://t.co/L2EHzcFaJP
📢 Exciting news! Check out the pre-print paper on stem cell editing by @HusserMathieu, a talented CASB student! 🧪🧬#SynBioApps#Concordia
Endogenous tagging using split mNeonGreen in human #iPSCs for live imaging studies https://t.co/L9Qn4OUinQ
This work from @Kachroo_Lab focused on functionally non-replaceable human genes. By developing an automated, high throughput pipeline, we obtained human gene variants of human Beta2 subunit of the proteasome core that can cover for the corresponding a yeast gene function.
Rapid, scalable, combinatorial genome engineering by Marker-less Enrichment and Recombination of Genetically Engineered loci (MERGE) https://t.co/kcTjyEVhY2 #bioRxiv
Glad to share with you our latest preprint in bioRxiv: "Divergent Directed Evolution of a TetR Repressor Towards Aromatic Molecules" on which Mohamed Nasr is first author. Looking forward to sharing the postprint!
https://t.co/rpP4QHQcK3
@SynBioCU@biologyatCU@ProteoQuebec
I'm exited to share a new preprint from the lab, the culmination of Momo Sae-Lee's PhD, with major contributions from @computingCaitie & @eric_verbeke, in which we mapped the proteome & interactome of the simplest primary human cell type, red blood cells:
https://t.co/EupRsAPHhK
I am on the palliative care ward in a room with a spectacular view. My bowel obstruction has not cleared. I’m surrounded by love and ready for the pain to end.
Malgré une pandémie et une éruption volcanique, @ShawnSimp246 🇧🇧 se joint finalement à notre équipe! Shawn est informaticien et veillera au bon fonctionnement de nos séquenceurs et chaines de traitement de données, en plus de donner un coup de main en bio-informatique💻🧬