Please use this identifier to cite or link to this item: https://ahro.austin.org.au/austinjspui/handle/1/25983
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dc.contributor.authorSoliman, Caroline-
dc.contributor.authorGuy, Andrew J-
dc.contributor.authorChua, Jia Xin-
dc.contributor.authorVankemmelbeke, Mireille-
dc.contributor.authorMcIntosh, Richard S-
dc.contributor.authorEastwood, Sarah-
dc.contributor.authorTruong, Vi Khanh-
dc.contributor.authorElbourne, Aaron-
dc.contributor.authorSpendlove, Ian-
dc.contributor.authorDurrant, Lindy G-
dc.contributor.authorRamsland, Paul A-
dc.date.accessioned2021-03-03T21:50:01Z-
dc.date.available2021-03-03T21:50:01Z-
dc.date.issued2020-09-18-
dc.identifier.citationThe Biochemical Journal 2020; 477(17): 3219-3235en
dc.identifier.urihttps://ahro.austin.org.au/austinjspui/handle/1/25983-
dc.description.abstractImmunotherapy has been successful in treating many tumour types. The development of additional tumour-antigen binding monoclonal antibodies (mAbs) will help expand the range of immunotherapeutic targets. Lewis histo-blood group and related glycans are overexpressed on many carcinomas, including those of the colon, lung, breast, prostate and ovary, and can therefore be selectively targeted by mAbs. Here we examine the molecular and structural basis for recognition of extended Lea and Lex containing glycans by a chimeric mAb. Both the murine (FG88.2) IgG3 and a chimeric (ch88.2) IgG1 mAb variants showed reactivity to colorectal cancer cells leading to significantly reduced cell viability. We determined the X-ray structure of the unliganded ch88.2 fragment antigen-binding (Fab) containing two Fabs in the unit cell. A combination of molecular docking, glycan grafting and molecular dynamics simulations predicts two distinct subsites for recognition of Lea and Lex trisaccharides. While light chain residues were exclusively used for Lea binding, recognition of Lex involved both light and heavy chain residues. An extended groove is predicted to accommodate the Lea-Lex hexasaccharide with adjoining subsites for each trisaccharide. The molecular and structural details of the ch88.2 mAb presented here provide insight into its cross-reactivity for various Lea and Lex containing glycans. Furthermore, the predicted interactions with extended epitopes likely explains the selectivity of this antibody for targeting Lewis-positive tumours.en
dc.language.isoeng
dc.subjectLewis glycansen
dc.subjectcancer-targeting antibodyen
dc.subjectcarbohydrate-binding antibodyen
dc.subjectmolecular dockingen
dc.titleMolecular and structural basis for Lewis glycan recognition by a cancer-targeting antibody.en
dc.typeJournal Articleen
dc.identifier.journaltitleThe Biochemical Journalen
dc.identifier.affiliationDivision of Cancer and Stem Cells, School of Medicine, University of Nottingham Biodiscovery Institute, University Park, Nottingham, U.Ken
dc.identifier.affiliationSchool of Science, RMIT University, Melbourne, Victoria, Australiaen
dc.identifier.affiliationDepartment of Immunology, Central Clinical School, Monash University, Melbourne, Victoria, Australiaen
dc.identifier.affiliationSurgery (University of Melbourne)en
dc.identifier.affiliationScancell Limited, University of Nottingham Biodiscovery Institute, University Park, Nottingham, U.Ken
dc.identifier.affiliationDivision of Cancer and Stem Cells, School of Medicine, University of Nottingham Biodiscovery Institute, University Park, Nottingham, U.Ken
dc.identifier.doi10.1042/BCJ20200454en
dc.type.contentTexten
dc.identifier.pubmedid32789497
local.name.researcherRamsland, Paul A
item.openairetypeJournal Article-
item.cerifentitytypePublications-
item.grantfulltextnone-
item.fulltextNo Fulltext-
item.openairecristypehttp://purl.org/coar/resource_type/c_18cf-
item.languageiso639-1en-
crisitem.author.deptSurgery (University of Melbourne)-
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