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个人简介
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Functional proteomics has allowed us to formulate a comprehensive understanding of receptors’ structure, a mechanism for the macromolecular basis of receptor heteromerization and define heteromers formation (e.g. Adenosine A2A-Dopamine D2, Cannabinoid CB1-Dopamine D2 and NMDA NR1-Dopamine D1) at the molecular level. Through the study of noncovalent interactions, we have also elucidated the mechanism of NMDA mediated dynorphin neurotoxicity and designed a decoy peptide that takes into account the structure of its target.
Functional proteomics has allowed us to formulate a comprehensive understanding of receptors’ structure, a mechanism for the macromolecular basis of receptor heteromerization and define heteromers formation (e.g. Adenosine A2A-Dopamine D2, Cannabinoid CB1-Dopamine D2 and NMDA NR1-Dopamine D1) at the molecular level. Through the study of noncovalent interactions, we have also elucidated the mechanism of NMDA mediated dynorphin neurotoxicity and designed a decoy peptide that takes into account the structure of its target.
研究兴趣
论文共 252 篇作者统计合作学者相似作者
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Sophie Liuu,Annelaure Damont,Alain Perret,Olivier Firmesse,François Becher, Gwenaëlle Lavison-Bompard,Amandine Hueber,Amina S Woods,Ekaterina Darii,François Fenaille, Jean-Claude Tabet
Mass spectrometry reviews (2024)
Benjamin L. Oyler, Jeferson A. Valencia-Davila,Eirini Moysi, Adam Molyvdas,Kalliopi Ioannidou,Kylie March,David Ambrozak,Laurence De Leval,Giulia Fabozzi,Amina S. Woods,Richard A. Koup,Constantinos Petrovas
ISCIENCEno. 8 (2023)
Global knowledge, memory and communicationno. 6/7 (2022): 648-665
PEDIATRIC PULMONOLOGYno. SUPnan (2020): S177-S177
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作者统计
#Papers: 252
#Citation: 16408
H-Index: 70
G-Index: 123
Sociability: 7
Diversity: 4
Activity: 12
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