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Stevia, Steviol glycosides: Stevioside and Rebaudioside A

    https://www.foodsweeteners.com/steviol-glycosides-stevioside-and-rebaudioside-a/#:~:text=Rebaudioside%20A%20%28also%20called%20%E2%80%9CReb%20A%E2%80%9D%29%20is%20another,moieties.%20It%20contains%20four%20glucose%20molecules%20in%20total.
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Rebaudioside A | C44H70O23 - PubChem

    https://pubchem.ncbi.nlm.nih.gov/compound/Rebaudioside-A
    2006-07-28. Rebaudioside A is a rebaudioside that is rubusoside in which the hydroxy groups at positions 3 and 4 of the beta-D-glucopyranosyloxy group at the 13alpha position have both been converted to the corresponding beta-D-glucopyranoside. It has a role as a sweetening agent.

Rebaudioside A | C44H70O23 | ChemSpider

    http://www.chemspider.com/Chemical-Structure.5294031.html
    Rebaudioside A (sometimes shortened to "Reb A") is a steviol glycoside from the leaves of Stevia rebaudiana that is 240 times sweeter than sugar. Rebaudioside A is the sweetest and most stable steviol glycoside, and is less bitter than stevioside. Stevia leaves contain 9.1% stevioside and 3.8% rebaudioside A.

Stevia, Steviol glycosides: Stevioside and Rebaudioside A

    https://www.foodsweeteners.com/steviol-glycosides-stevioside-and-rebaudioside-a/
    Rebaudioside A (also called “Reb A”) is another Steviol glycoside that is 200 times sweeter than sugar. The glycoside contains only glucose (to the exclusion of other commonly found monosaccharides) as its monosaccharide moieties. It contains four glucose molecules in total. Rebaudioside A Structure

Substance Name: Rebaudioside A - National Institutes of Health

    https://chem.nlm.nih.gov/chemidplus/rn/58543-16-1
    58543-16-1 - HELXLJCILKEWJH-NCGAPWICSA-N - Rebaudioside A - Similar structures search, synonyms, formulas, resource links, and other chemical information.

Rebaudioside A - an overview | ScienceDirect Topics

    https://www.sciencedirect.com/topics/medicine-and-dentistry/rebaudioside-a
    Rebaudioside A ( 4) has a branched trisaccharide unit at C-13 and is sweeter and more pleasant tasting than stevioside ( 5 ), with a C-13 sophorosyl disaccharide moiety. Removal of the C-19 sugar unit of rebaudioside A, so as to produce rebaudioside B ( 19 ), results in a less potently sweet-tasting compound.

Rebaudioside A - Wikipedia

    https://en.wikipedia.org/wiki/Rebaudioside_A
    Rebaudioside A (sometimes shortened to "Reb A") is a steviol glycoside from the leaves of Stevia rebaudiana that is 240 times sweeter than sugar. Rebaudioside A is the sweetest and most stable steviol glycoside, and is less bitter than stevioside. Stevia leaves contain 9.1% stevioside and 3.8% rebaudioside A.

Rebaudioside A | CAS#:58543-16-1 | Chemsrc

    https://www.chemsrc.com/en/cas/58543-16-1_122145.html
    Rebaudioside A Biological Activity. Description. Rebaudioside A is a steviol glycoside, α-glucosidase inhibitor with IC50 of 35.01 μg/ml.can inhibit ATP-sensitive K+-channels.Target: α-glucosidase [1]IC 50: 35.01 ug/mLIn vitro: rebaudioside A stimulat the insulin secretion from MIN6 cells in a dose- and glucose-dependent manner.

Rebaudioside D | C50H80O28 - PubChem

    https://pubchem.ncbi.nlm.nih.gov/compound/Rebaudioside-D
    Rebaudioside D is a rebaudioside that is rebaudioside A in which the hydroxy group at position 2 of the beta-D-glucosyl ester moiety has been converted to the corresponding beta-D-glucoside. Found in minute quantities in the leaves of Stevia rebaudiana. It has a role as a sweetening agent. It is a tetracyclic diterpenoid, a rebaudioside and a sophoroside.

Isolation and structure elucidation of rebaudioside D2 ...

    https://pubmed.ncbi.nlm.nih.gov/25233591/
    We report the isolation and complete structure of an isomer of rebaudioside D, known as rebaudioside D2. This novel steviol glycoside was isolated from a bioconversion reaction of rebaudioside A to rebaudioside D. Rebaudioside D2 possesses a relatively rare 1 --> 6 sugar linkage, which was discovered by extensive analysis of NMR (1H, 13C, COSY, HSQC-DEPT, …

Modeled structure-based computational redesign of a ...

    https://www.sciencedirect.com/science/article/pii/S1369703X20301418
    In this study, a computational strategy that combines protein structure prediction, sequence optimization, and molecular dynamics simulation was developed to improve the catalytic efficiency of the UDP-dependent glycosyltransferase EUGT11 for the synthesis of rebaudioside D from rebaudioside A. The modeled structure of EUGT11 was constructed ...

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