#RNATargeting
Extremely proud of Jihed Azzouz who recently obtained his PhD in our team working on #RNA targeting using small molecules and receiving the Excellence Award from Université Côte d'Azur, congratulations Jihed! #RNAtargeting #medchem #chembio
December 6, 2024 at 7:22 AM
What better than a new paper as a first post in bluesky: chemistry-europe.onlinelibrary.wiley.com/doi/full/10.... I have been lucky to collaborate with Laurent Micouin and Erica Benedetti on new azaspirocycles as original RNA binders #RNA #RNAtargeting #medchem #chembio
Design and Evaluation of Azaspirocycles as RNA binders
This study describes efficient synthetic routes for the preparation of novel azaspirocycles. The resulting molecules exhibit unique three-dimensional structures with potential applications in drug di...
chemistry-europe.onlinelibrary.wiley.com
December 1, 2024 at 10:08 PM
💡 Interested in light-controlled RNA engineering?

👉 Hanswillemenke et al. use light-controlled RNA-protein conjugates to regulate RNA base editing in living cells.

🔗 brnw.ch/21x5n6k

#RNAEditing #RNATargeting #Photocontrol
September 3, 2026 at 1:11 PM
We recently developed a comprehensive set of assays to identify small-molecule binders for MALAT1 lncRNA, look at the results we obtained recently published in ACS Chemical Biology @pubs.acs.org great collaboration with Sanofi #RNA #RNAtargeting #chembio #medchem pubs.acs.org/doi/10.1021/...
Development of Comprehensive Screening and Assessment Assays for Small-Molecule Ligands of MALAT1 lncRNA
RNA targeting represents an original and promising approach to the discovery of new therapeutic tools against numerous diseases. The majority of intracellular RNAs are noncoding RNAs that play key reg...
pubs.acs.org
April 30, 2025 at 6:05 AM
🚨𝗝𝗼𝗯 𝗢𝗳𝗳𝗲𝗿: 𝗣𝗵𝗗 𝗽𝗼𝘀𝗶𝘁𝗶𝗼𝗻
⚠️ Deadline: 15 Sep 2026
🔬 Starting date: At the earliest convenience
📍 Location: San Sebastian (Spain)

👉 More information: https://www.cicbiomagune.es/job-offer-detail?id=43596

#JobOfferCICbiomaGUNE #ProteinEngineering #RNAtargeting
August 18, 2026 at 12:17 PM
RNA-guided CRISPR-Cas12a2 approach selectively kills cancer cells by targeting mutant RNA signatures

🤖 IA: It's not clickbait ✅
👥 Users: It's not clickbait ✅

#crispr #cancertherapy #rnatargeting

View full AI summary:
RNA-guided CRISPR-Cas12a2 approach selectively kills cancer cells by targeting mutant RNA signatures
This study presents a new experimental gene-editing strategy designed to selectively eliminate cancer cells by leveraging RNA-guided CRISPR technology. Researchers focused on CRISPR-Cas12a2, an RNA-guided nuclease capable of trans-nucleolytic activity, and reprogrammed it to detect cancer-specific RNA transcripts. Many cancers are driven by genetic mutations in key tumor suppressor genes such as TP53, which is frequently altered in nearly 40–50% of cases. However, these mutations have been difficult to target therapeutically because the resulting proteins often lack suitable binding pockets for traditional drugs, and restoring their normal function has proven challenging. In this approach, the engineered Cas12a2 system senses specific RNA signatures associated with cancer cells. Once activated by these transcripts, the nuclease triggers widespread chromatin degradation, a process described as “chromatin shredding.” This leads to extensive DNA damage, activation of cellular stress responses, and ultimately cell death. The mechanism is distinct from conventional CRISPR gene editing, as it relies on RNA detection rather than direct DNA sequence targeting, enabling a form of molecular sensing that can distinguish cancerous from healthy cells based on transcriptomic profiles. The authors suggest that this RNA-triggered chromatin destruction could represent a new class of precision oncology tools aimed at “undruggable” mutations. By coupling RNA recognition with destructive nuclease activity, the system may allow for highly selective targeting of tumor cells while sparing normal tissue. Although the findings are currently presented in an unedited manuscript form and require further validation, the study highlights a potentially transformative direction in cancer therapy that integrates RNA sensing, genome instability induction, and programmable nucleases for selective cell elimination.
en.killbait.com
June 10, 2026 at 1:27 AM