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Christian Cambillau grad student 1990 Université Paul Cézanne (Aix-Marseille). Faculté des sciences et techniques de Saint-Jérôme
 (Etude christallographique de l'interaction entre une lectine végétale (Lathyrus ochrus) et divers saccharides)
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Debarnot C, Monneau YR, Roig-Zamboni V, et al. (2019) Substrate binding mode and catalytic mechanism of human heparan sulfate d-glucuronyl C5 epimerase. Proceedings of the National Academy of Sciences of the United States of America
Nguyen NT, Vivès RR, Torres M, et al. (2018) Genetic and enzymatic characterization of 3-O-sulfotransferase SNPs associated with Plasmodium falciparum parasitaemia. Glycobiology
Sulzenbacher G, Roig-Zamboni V, Lebrun R, et al. (2017) Glycosylate and move! The glycosyltransferase Maf is involved in bacterial flagella formation. Environmental Microbiology
Roig-Zamboni V, Cobucci-Ponzano B, Iacono R, et al. (2017) Structure of human lysosomal acid α-glucosidase-a guide for the treatment of Pompe disease. Nature Communications. 8: 1111
Bourne Y, Sharpless KB, Taylor P, et al. (2016) Steric and dynamic parameters influencing in situ cycloadditions to form triazole inhibitors with crystalline acetylcholinesterase. Journal of the American Chemical Society
Bourne Y, Sulzenbacher G, Radić Z, et al. (2015) Marine Macrocyclic Imines, Pinnatoxins A and G: Structural Determinants and Functional Properties to Distinguish Neuronal α7 from Muscle α1(2)βγδ nAChRs. Structure (London, England : 1993). 23: 1106-15
Sulzenbacher G, Roig-Zamboni V, Peumans WJ, et al. (2015) Structural basis for carbohydrate binding properties of a plant chitinase-like agglutinin with conserved catalytic machinery. Journal of Structural Biology. 190: 115-21
Parsiegla G, Noguere C, Santell L, et al. (2012) The structure of human DNase I bound to magnesium and phosphate ions points to a catalytic mechanism common to members of the DNase I-like superfamily. Biochemistry. 51: 10250-8
Sulzenbacher G, Roig-Zamboni V, Peumans WJ, et al. (2010) Crystal structure of the GalNAc/Gal-specific agglutinin from the phytopathogenic ascomycete Sclerotinia sclerotiorum reveals novel adaptation of a beta-trefoil domain. Journal of Molecular Biology. 400: 715-23
Vincent F, Molin DD, Weiner RM, et al. (2010) Structure of a polyisoprenoid binding domain from Saccharophagus degradans implicated in plant cell wall breakdown. Febs Letters. 584: 1577-84
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