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Characterizations and In Vitro Gut Microbiome Modulatory Effects of Gluco-Oligosaccharides Synthesized by the Acceptor Reactions of Glucansucrase 53

dc.contributor.authorBayaman, Rabia Yusra
dc.contributor.authorAlkay, Zuhal
dc.contributor.authorIspirli, Humeyra
dc.contributor.authorArioglu-Tuncil, Seda
dc.contributor.authorDere, Sevda
dc.contributor.authorCan, Hasan
dc.contributor.authorGonzales, Miguel Angel Alvarez
dc.contributor.authorSagdic, Osman
dc.contributor.authorLindemann, Stephen R.
dc.contributor.authorTuncil, Yunus Emre
dc.contributor.authorDertli, Enes
dc.date.accessioned2026-06-27T15:21:58Z
dc.date.issued2025
dc.description.abstractThe production of novel oligosaccharides with potential prebiotic effects is of interest to expand the current market and explore the effectiveness of new functional carbohydrate forms. The utilization of glucansucrases is a cost-effective and environmentally friendly biotechnological strategy for producing novel gluco-oligosaccharides through acceptor reactions. In this study, an active glucansucrase (GS53) was used to produce gluco-oligosaccharides via its acceptor reactions with glucose, maltose, and maltotriose, and these oligosaccharides were tested in terms of structure and their gut microbiome modulatory effects. The formations of oligosaccharides were monitored by TLC analysis, and GS53 was active for the three acceptors but not for the other sugars tested. The structural characterization of the gluco-oligosaccharides by 1H NMR analysis revealed the glycosylation of each acceptor with alpha-(1 -> 3) and alpha-(1 -> 6) linkages, whereas LC-MS analysis demonstrated the formations of DP 8, DP 7, and DP 6 oligosaccharides with acceptors maltose, maltotriose, and glucose, respectively. In vitro fecal fermentation analysis, in which microbial short-chain fatty acids (SCFAs) and microbial compositional changes were assessed using gas chromatography and 16S rRNA sequencing, respectively, demonstrated that the gluco-oligosaccharides formed SCFAs-particularly propionate and butyrate-at levels comparable to those observed with inulin, a well-established prebiotic. Additionally, the gluco-oligosaccharides were found to promote the growth of Bifidobacterium adolescentis and Blautia OTUs, which are known to have important physiological functions beneficial to human health. Overall, these results demonstrate that gluco-oligosaccharides synthesized using GS53 through acceptor reactions exhibit prebiotic potentials and could be utilized in the future as dietary supplements as well as in the development of functional foods targeting colonic health.en
dc.description.sponsorshipTurkish Academy of Sciences via the TUEBA-GEBIdot
dc.description.sponsorshipP award
dc.description.urihttps://doi.org/10.3390/fermentation11060324
dc.identifier.doi10.3390/fermentation11060324
dc.identifier.eissn2311-5637
dc.identifier.issue6
dc.identifier.urihttps://hdl.handle.net/20.500.14981/70246
dc.identifier.volume11
dc.identifier.wos001515554800001
dc.language.isoeng
dc.publisherMDPI
dc.relation.ispartofFERMENTATION-BASEL
dc.rightsopenAccess
dc.subjectglucansucrases
dc.subjectacceptor reactions
dc.subjectgluco-oligosaccharides
dc.subjectshort chain fatty acids
dc.subjectbutyrate
dc.subjectpropionate
dc.subjectgut microbiome
dc.subjectMETABOLISM
dc.subjectSUCCINATE
dc.subjectBACTERIA
dc.subjectBiotechnology & Applied Microbiology
dc.subjectFood Science & Technology
dc.titleCharacterizations and In Vitro Gut Microbiome Modulatory Effects of Gluco-Oligosaccharides Synthesized by the Acceptor Reactions of Glucansucrase 53
dc.typeArticle
dspace.entity.typePublication
local.import.sourceWOS

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