UDP-β-L-Rhamnose (Highly Pure)


Catalog Number: MDP0886 (0.1 mg)
UDP-β-L-Rhamnose is a highly pure glycosyl donor for glycosyltransferases in plants. This product has been used as component of the glycosylation of bacterial endotoxins. It has also been used in a wide array of other biochemical and immunological applications. Custom bulk amounts of this product are available upon request.

Live enquiry about this product via Text/SMS: 1-858-900-3210.

In stock

SKU: MDP0886 Category: Tag:


Catalog number: MDP0886
Lot number: Batch Dependent
Expiration Date: Batch dependent
Amount: 0.1 mg
Molecular Weight or Concentration: 550.3 g/mol
Supplied as: Sodium Salt
Applications: component of the glycosylation of bacterial endotoxins
Storage: -20°C
Keywords: Uridine 5′-(beta-L-Rhamnopyranosyl Diphosphate); UDP-beta-L-Rha, UDP-beta-L-Rha
Grade: Biotechnology grade. All products are highly pure. All solutions are made with Type I ultrapure water (resistivity >18 MΩ-cm) and are filtered through 0.22 um.
Indication for Use:This product is for Research Use Only. This product is NOT for human or animal use.

1: Bockhaus NJ, Ferek JD, Thoden JB, Holden HM. The high-resolution structure of
a UDP-L-rhamnose synthase from Acanthamoeba polyphaga Mimivirus. Protein Sci.
2020 Nov;29(11):2164-2174.

2: Gu N, Qiu C, Zhao L, Zhang L, Pei J. Enhancing UDP-Rhamnose Supply for
Rhamnosylation of Flavonoids in Escherichia coli by Regulating the
Modular Pathway and Improving NADPH Availability. J Agric Food Chem. 2020 Sep

3: Li P, Li YJ, Zhang FJ, Zhang GZ, Jiang XY, Yu HM, Hou BK. The Arabidopsis
UDP-glycosyltransferases UGT79B2 and UGT79B3, contribute to cold, salt and
drought stress tolerance via modulating anthocyanin accumulation. Plant J. 2017

4: Rautengarten C, Ebert B, Moreno I, Temple H, Herter T, Link B, Doñas-Cofré D,
Moreno A, Saéz-Aguayo S, Blanco F, Mortimer JC, Schultink A, Reiter WD, Dupree
P, Pauly M, Heazlewood JL, Scheller HV, Orellana A. The Golgi localized
bifunctional UDP-rhamnose/UDP-galactose transporter family of Arabidopsis. Proc
Natl Acad Sci U S A. 2014 Aug 5;111(31):11563-8.

5: Zong G, Fei S, Liu X, Li J, Gao Y, Yang X, Wang X, Shen Y. Crystal structures
of rhamnosyltransferase UGT89C1 from Arabidopsis thaliana reveal the molecular
basis of sugar donor specificity for UDP-β-l-rhamnose and rhamnosylation
mechanism. Plant J. 2019 Jul;99(2):257-269.

6: Martinez V, Ingwers M, Smith J, Glushka J, Yang T, Bar-Peled M. Biosynthesis
of UDP-4-keto-6-deoxyglucose and UDP-rhamnose in pathogenic fungi Magnaporthe
grisea and Botryotinia fuckeliana. J Biol Chem. 2012 Jan 6;287(2):879-92.

7: Ma L, Salas O, Bowler K, Oren-Young L, Bar-Peled M, Sharon A. Genetic
alteration of UDP-rhamnose metabolism in Botrytis cinerea leads to the
accumulation of UDP-KDG that adversely affects development and pathogenicity.
Mol Plant Pathol. 2017 Feb;18(2):263-275.

8: Dai X, Zhao G, Jiao T, Wu Y, Li X, Zhou K, Gao L, Xia T. Involvement of Three
CsRHM Genes from Camellia sinensis in UDP-Rhamnose Biosynthesis. J Agric Food
Chem. 2018 Jul 11;66(27):7139-7149.

9: Jiang N, Dillon FM, Silva A, Gomez-Cano L, Grotewold E. Rhamnose in plants –
from biosynthesis to diverse functions. Plant Sci. 2021 Jan;302:110687.
10: Chen A, Gu N, Pei J, Su E, Duan X, Cao F, Zhao L. Synthesis of
Isorhamnetin-3-O-Rhamnoside by a Three-Enzyme (Rhamnosyltransferase,
Glycine Max Sucrose Synthase, UDP-Rhamnose Synthase) Cascade Using a UDP-
Rhamnose Regeneration System. Molecules. 2019 Aug 22;24(17):3042.

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Additional information

Weight 48 oz
Dimensions 8 × 8 × 8 in

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