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Alexis Vallée-Bélisle Profile
Alexis Vallée-Bélisle

@LaboAVB

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Prof. Chimie @UMontreal; Titulaire @CRC_CRC en Bio-ingénierie et Bio-nanotechnologie; Co-founder Anasens #startup #Nanotechnology #Biosensors #Chemistry

Université de Montréal
Joined October 2022
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@LaboAVB
Alexis Vallée-Bélisle
6 months
RT @J_A_C_S: Programming the Kinetics of Chemical Communication: Induced Fit vs Conformational Selection | Journal of the American Chemical….
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pubs.acs.org
Life on Earth depends on chemical communication and the ability of biomolecular switches to integrate various chemical signals that trigger their activation or deactivation over time scales ranging...
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@LaboAVB
Alexis Vallée-Bélisle
6 months
3) Thanks to Carl-Prévost Tremblay, Achille Vigneault, and @DomLauz for their hard work on the project. Thanks also to the funding agencies: @NSERC_CRSNG, @FRQ_NT and @ProteoQuebec.#DNA #RNA #ChemicalBiology #protein #sensor #Nanotechnology #SyntheticBiology #Nanomachines.
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@LaboAVB
Alexis Vallée-Bélisle
6 months
1) Latest work from the lab (in @J_A_C_S): : how nature programs the kinetic of its molecular systems and to use this information to build better nanotechnology. Link to article:
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pubs.acs.org
Life on Earth depends on chemical communication and the ability of biomolecular switches to integrate various chemical signals that trigger their activation or deactivation over time scales ranging...
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@LaboAVB
Alexis Vallée-Bélisle
6 months
3) Merci à Carl-Prévost Tremblay, Achille Vigneault et @DomLauz pour leurs contributions à ce projet. Un grand merci aux organismes subventionnaires: @NSERC_CRSNG, @FRQ_NT et @ProteoQuebec.
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@LaboAVB
Alexis Vallée-Bélisle
6 months
1) Les derniers travaux du labo (dans @J_A_C_S): comment la nature programme la cinétique de ses systèmes moléculaires et comment utiliser ces stratégies pour développer de meilleures nanotechnologies. Lien vers l’article:
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pubs.acs.org
Life on Earth depends on chemical communication and the ability of biomolecular switches to integrate various chemical signals that trigger their activation or deactivation over time scales ranging...
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@LaboAVB
Alexis Vallée-Bélisle
1 year
Congrats @DomLauz and thanks to the funding agencies: @NSERC_CRSNG, @FRQ_NT, @ProteoQuebec, @NSERC_PROMOTE, @TIPS_SPIIE #CRC (3/3).
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@LaboAVB
Alexis Vallée-Bélisle
1 year
Briefly, using simple DNA-based models, we illustrate how molecular assemblies may have evolved to create complex self-regulating functions ranging from improved cooperativity to self-inhibition while demonstrating the thermodynamic framework to create such nanosystems. (2/3).
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@LaboAVB
Alexis Vallée-Bélisle
1 year
Life is sustained by thousands of different self-assembled nanomachines. How were these systems created, programmed, and fine-tuned to support life? See our latest paper in @angew_chem, which may also inspired the design of new nanotechnologies: (1/3).
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onlinelibrary.wiley.com
Molecular assembly can be designed by fusing binding domains. A precise optimization of the level of compaction of the assembly using linker of different lengths or compositions can provide a simple...
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@LaboAVB
Alexis Vallée-Bélisle
1 year
Félicitation à @DomLauz et merci aux organismes subventionnaires: @NSERC_CRSNG, @FRQ_NT, @ProteoQuebec, @NSERC_PROMOTE et @TIPS_SPIIE #CRC. (3/3).
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@LaboAVB
Alexis Vallée-Bélisle
1 year
Petit résumé. Avec des modèles simples d'ADN, on montre comment ces assemblages moléculaires ont pu évoluer pour créer des fonctions autorégulatrices complexes allant de la coopérativité à l'auto-inhibition, le tout, en expliquant le cadre thermodynamique pour les créer. (2/3).
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@LaboAVB
Alexis Vallée-Bélisle
1 year
La vie est soutenue par des milliers de nanomachines auto-assemblées, mais comment ces systèmes ont-ils été créés, programmés et réglés pour soutenir la vie ? Voir notre dernier article dans @angew_chem : (1/3).
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onlinelibrary.wiley.com
Molecular assembly can be designed by fusing binding domains. A precise optimization of the level of compaction of the assembly using linker of different lengths or compositions can provide a simple...
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@LaboAVB
Alexis Vallée-Bélisle
1 year
RT @angew_chem: Design and Thermodynamics Principles to Program the Cooperativity of Molecular Assemblies (Alexis Vallee-Belisle and co-wor….
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onlinelibrary.wiley.com
Molecular assembly can be designed by fusing binding domains. A precise optimization of the level of compaction of the assembly using linker of different lengths or compositions can provide a simple...
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@LaboAVB
Alexis Vallée-Bélisle
2 years
(5/5) Un gros merci à @AlexGelle d’avoir si bien vulgarisé nos travaux. Merci (thanks) aux organismes subventionnaires: @NSERC_CRSNG, @FRQ_NT, @ProteoQuebec & @NSERC_PROMOTE.
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@LaboAVB
Alexis Vallée-Bélisle
2 years
(2/5) Our @J_A_C_S paper was selected among the top 10 discoveries of 2023 in @QuebecScience! Dive into the secrets of chemical communication and molecular languages:
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nouvelles.umontreal.ca
Université de Montréal scientists recreate and compare molecular languages at the origin of life – opening new doors for the development of novel nanotechnologies.
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@LaboAVB
Alexis Vallée-Bélisle
2 years
(1/5) Les travaux de doctorat de @DomLauz réalisé à @UMontreal se retrouvent parmi les 10 découvertes de l'année 2023 de @QuebecScience! Plongez dans les secrets de la communication chimique et des langages moléculaires:
nouvelles.umontreal.ca
En 2023, parmi les 10 découvertes québécoises mises à l’honneur par le magazine «Québec Science», 3 sont le fait d’équipes de l’Université de Montréal dans les domaines de la chimie et de la médecine.
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@LaboAVB
Alexis Vallée-Bélisle
2 years
Congrats again to @DomLauz and thanks to the funding agencies: @NSERC_CRSNG, @FRQ_NT, @ProteoQuebec, @NSERC_PROMOTE, @TIPS_SPIIE and to editor @SleimanHanadi at @J_A_C_S (3/3).
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