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Michael Smietana

@smietana-m.bsky.social
565 followers 318 following 14 posts

Professor of Chemistry and Nucleic Acid Chemistry @umontpellier.bsky.social Team Leader ChemBioNAC @ChemBioNAC.bsky.social www.chembionac.com #IBMM

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Reposted by Michael Smietana
Organic & Biomolecular Chemistry @orgbiomolchem.rsc.org · 29/06/2026
🔓Don't miss this #OpenAccess review in our latest issue by @smietana-m.bsky.social, Guillaume Clavé & co. @umontpellier.bsky.social discussing how the sulfo-click reaction expands the bioconjugation & medicinal chemistry toolbox #orgchem #medchem Check it out in full👇
pubs.rsc.org
The sulfo-click reaction: expanding the toolbox for bioconjugation and medicinal chemistry
The sulfo-click reaction, which relies on the chemoselective coupling of sulfonyl azides with thioacids to yield N-acylsulfonamides, has emerged as a powerful and versatile transformation in…
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Reposted by Michael Smietana
RSC Medicinal Chemistry @rscmedchem.rsc.org · 25/05/2026
🔓Read #OpenAccess research by @smietana-m.bsky.social, @jeanyveswinum.bsky.social et al. @umontpellier.bsky.social in our latest issue harnessing oligonucleotide architecture for potent multivalent inhibition of human carbonic anhydrases #medchem Find it in full here🔽
pubs.rsc.org
Harnessing oligonucleotide architecture for potent multivalent inhibition of human carbonic anhydrases
This study presents the design and synthesis of a novel class of carbonic anhydrase inhibitors (CAIs) using oligonucleotides as an original multivalent platform. Single-stranded oligonucleotides…
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Michael Smietana @smietana-m.bsky.social · 14/01/2026
📢DNA templates are no longer required for efficient nucleic acid ligation. 💡We introduce Charge-Transfer Assisted Ligation (CTAL): a new templated reactivity based on π-stacking donor–acceptor interactions (DAN/NDI), not base pairing. 📄 chemistry-europe.onlinelibrary.wiley.com/doi/epdf/10.10
chemistry-europe.onlinelibrary.wiley.com
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Reposted by Michael Smietana
Organic & Biomolecular Chemistry @orgbiomolchem.rsc.org · 31/10/2025
Be sure to read research from Guillaume Clavé, @smietana-m.bsky.social & co. at @umontpellier.bsky.social on the synthesis, duplex-forming properties and enzymatic resistance of oligonucleotides containing N-acylsulfonamide linkages #orgchem Find the full report here🔽
pubs.rsc.org
Synthesis, duplex-forming properties, and enzymatic resistance of oligonucleotides containing N-acylsulfonamide linkages
We report the synthesis of (2-(N-acetylsulfamoyl)ethyl)carbamate (NAC)-linked thymidine dinucleotide via the sulfo-click reaction and its incorporation into DNA oligonucleotides. Thermal denaturation…
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Reposted by Michael Smietana
RentmeisterLab @rentmeisterlab.bsky.social · 23/10/2025
Had a great day visiting Francoise Debart and Michael Smietana @smietana-m.bsky.social at IBMM in Montpellier. 😊 Thank you for the invitation, the hospitality and the scientific discussions. 🧬🤩
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Michael Smietana @smietana-m.bsky.social · 09/10/2025
Our lastest article has just been released (Org. Biomol. Chem): Synthesis, duplex-forming properties, and enzymatic resistance of oligonucleotides containing N-acylsulfonamide linkages pubs.rsc.org/en/content/a... @chembionac.bsky.social @umontpellier.bsky.social @cnrs.fr @ibmm-balard.bsky.social
pubs.rsc.org
Synthesis, duplex-forming properties, and enzymatic resistance of oligonucleotides containing N-acylsulfonamide linkages
We report the synthesis of (2-(N-acetylsulfamoyl)ethyl)carbamate (NAC)-linked thymidine dinucleotide via the sulfo-click reaction and its incorporation into DNA oligonucleotides. Thermal denaturation ...
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Michael Smietana @smietana-m.bsky.social · 24/06/2025
Very happy to share our latest publication on the Synthesis and Base-Pairing Properties of Oligonucleotides Containing 5′-(R)- and 5′-(S)-C-Aryl-thymidine now in JOC pubs.acs.org/doi/10.1021/... @chembionac.bsky.social @cnrs.fr @umontpellier.bsky.social @ibmm-balard.bsky.social
pubs.acs.org
Synthesis and Base-Pairing Properties of Oligonucleotides Containing 5′-(R)- and 5′-(S)-C-Aryl-thymidine
By applying the Liebeskind–Srogl cross-coupling reaction to pyrimidine nucleosides, a Pd(0)-catalyzed, Cu(I)-mediated process that effectively couples thioesters and boronic acids to form ketones, we previously described an efficient and easy access to 5′-C-acyl nucleosides. By reduction of the 5′-carbonyl group into a secondary alcohol, we report herein the synthesis of new 5′-C-aryl-5′-O-dimethoxytrityl-3′-O-phosphoramidite building blocks ready to be incorporated into oligonucleotides by automated synthesis. We describe the preparation of two sets of (R)- and (S)-diastereoisomers of 5′-C-phenylthymidine (PhT) and 5′-C-pyrenylthymidine (PyT), their conversion to phosphoramidites and incorporation into oligodeoxynucleotides (ODN). We also discuss the challenges faced by the synthesis of PyT-modified ODN, which required to modify the automated cycle to prevent backbone degradation in subsequent steps. The affinity and specificity of several 5′-C-aryl modified-ODN toward their complementary sequence were studied by UV-melting experiments. While thermal melting analysis failed to differentiate between matched and mismatched pairs, fluorescence measurements demonstrated that pyrenyl-modified ODN can effectively distinguish correct from incorrect base pairs. This highlights their potential use in the detection of genetic mutations through structural changes in DNA duplexes.
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Reposted by Michael Smietana
Michael Booth @drmikebooth.bsky.social · 23/06/2025
We have developed an entirely new mechanism of action for gene knockdown -> trafficking of targeted mRNAs to the lysosomal, using lysosomal trafficking oligonucleotides (LyTONs)! Published in @chemicalscience.rsc.org Led by Disha Kashyap #chemsky 🧪 pubs.rsc.org/en/content/a...
pubs.rsc.org
Engineering antisense oligonucleotides for targeted mRNA degradation through lysosomal trafficking
Antisense oligonucleotides (ASOs) can modulate gene expression at the mRNA level, providing the ability to tackle conventionally undruggable targets and usher in an era of personalized medicine. A key...
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Michael Smietana @smietana-m.bsky.social · 06/06/2025
Our work on Enantioselective Artificial PhotoDNAzyme now live on ChemRxiv tinyurl.com/mwtpd96u Our work merges synthetic transition-metal photocatalysis with the chiral environment of DNA to achieve visible-light-driven, enantioselective [2+2] cycloadditions.
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Michael Smietana @smietana-m.bsky.social · 28/05/2025
The Institute of Biomolecules Max Mousseron (ibmm.umontpellier.fr) invites applications for 2 CNRS tenure-track positions. -> Glycochemistry -> RNA Chemistry contact : du-ibmm@umontpellier.fr To apply: carrieres.cnrs.fr/recrutement-postes-de-chaires/
carrieres.cnrs.fr
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Reposted by Michael Smietana
Sebastien Ulrich @sebastienulrich.bsky.social · 28/04/2025
WE RECRUIT: 18-month post-doctoral position + attractive salary + institutional support and training for grant applications. Research topic: dynamic combinatorial chemistry, peptides, and mechanochemistry. @ibmm-balard.bsky.social @umontpellier.bsky.social @fredlamaty.bsky.social
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Reposted by Michael Smietana
kapdianant.bsky.social @kapdianant.bsky.social · 19/03/2025
Two of our innovations, KapdiPhos and SerrKap palladacycle are now commercialised and are available from leading chemical vendors such as Merck, Strem, BLD Pharm and TCI. kapdigroupresearch.com
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Reposted by Michael Smietana
G Berionni group @dr-berionni.bsky.social · 13/03/2025
📢 Postdoc Opportunity: - main-group and @Boron-chemistry.bsky.social, - ERC project "B-YOND" @erc.europa.eu, - University of Namur, Belgium. 🇪🇺 Join us at the chemistry institute in a dynamic and supportive environment ! ⏳ Deadline: 15. April 2025. ⤵️ Link to apply: euraxess.ec.europa.eu/jobs/323190.
euraxess.ec.europa.eu
Postdoctoral position (24 months) in main-group chemistry starting in June 2025
Context
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Michael Smietana @smietana-m.bsky.social · 28/01/2025
Very exciting scientific day on the occasion of Jean-Jacques Vasseur' retirement. Thanks to the speakers and thanks to all the participants. Happy retirement jacques !🌴🚴🥂 @umontpellier.bsky.social @chembionac.bsky.social @ibmm-balard.bsky.social
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Reposted by Michael Smietana
G Berionni group @dr-berionni.bsky.social · 24/01/2025
Fantastic lectures on photo-biocatalysis, transition-metal catalysis and organocatalysis at @UNamur.bsky.social chemistry department. Great dissussions with @GrimaudLaurence (ENS Paris), @smietana-m.bsky.social (Univ Montpellie), E McGarrigle (@McGarrigleGroup, UCDublin) and @OlivierRiant.
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Reposted by Michael Smietana
G Berionni group @dr-berionni.bsky.social · 21/01/2025
Mini-symposium at the chemistry department of @UNamur.bsky.social this Friday. Three invited speakers: Prof. Smietana (@Smietana-m.bsky.social), Grimaud (@Grimaud-Laurence.bsky.social) and McGarrigle (@McGarrigleGroup.bsky.social). Looking forward to welcome you and talk about chemistry!
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Michael Smietana @smietana-m.bsky.social · 13/01/2025
Recent Development of DNA‐based Biohybrid Systems Driven by Light 👉https://chemistry-europe.onlinelibrary.wiley.com/doi/10.1002/ejoc.202401297 @chembionac.bsky.social @ibmm-balard.bsky.social @chemistryeurope.bsky.social @umontpellier.bsky.social
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Michael Smietana @smietana-m.bsky.social · 04/12/2024
Zachary Pastorel has successfully defended his PhD thesis on DNA-based asymmetric catalysis. Congrats Zach ! Many thanks to the committee members @borisvauzeilles.bsky.social Olivier Baslé, Marine Desage Sami Lakhdar @umontpellier.bsky.social @chembionac.bsky.social
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Michael Smietana @smietana-m.bsky.social · 26/11/2024
Open position : Junior Professorship in Chemical Biology / RNA chemistry Please DM for more info @cnrs.bsky.social @umontpellier.bsky.social
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