32-α-L-Arabinofuranosyl-xylobiose (A3X)


Catalog Number: B2014462 (5 mg)
32-α-L-Arabinofuranosyl-xylobiose (A3X) is a high quality 32-α-L-Arabinofuranosyl-xylobiose for use as substrate for arabinoxylan degrading enzymes including endo-xylanase, β-xylosidase and α-L-arabinofuranosidase. This product has been used as molecular tool for various biochemical applications. It has also been used in a wide array of other chemical and immunological applications. Custom bulk amounts of this product are available upon request.

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32-α-L-Arabinofuranosyl-xylobiose (A3X)
Catalog number: B2014462
Lot number: Batch Dependent
Expiration Date: Batch dependent
Amount: 5 mg
Molecular Weight or Concentration: 414.4
Supplied as: Powder
Applications: molecular tool for various biochemical applications
Storage: RT
Keywords: 32-α-L-Arabinofuranosyl-xylobiose (A3X)
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.

1: Lee MJ, Kang Y, Son BS, Kim MJ, Park TH, Park D, Kim TJ. Hydrolysis of Arabinoxylo-oligosaccharides by α-L-Arabinofuranosidases and β-D-Xylosidase from Bifidobacterium dentium J Microbiol Biotechnol. 2022 Feb 28;32(2):187-194.
2: Geng A, Wu J, Xie R, Wang H, Wu Y, Li X, Chang F, Sun J. Highly thermostable GH51 α-arabinofuranosidase from Hungateiclostridium clariflavum DSM 19732 Appl Microbiol Biotechnol. 2019 May;103(9):3783-3793.
3: Orita T, Sakka M, Kimura T, Sakka K. Characterization of Ruminiclostridium josui arabinoxylan arabinofuranohydrolase, RjAxh43B, and RjAxh43B-containing xylanolytic complex Enzyme Microb Technol. 2017 Sep;104:37-43.
4: Utille JP, Jeacomine I. Synthesis of a library of allyl alpha-L-arabinofuranosyl-alpha- or beta-D-xylopyranosides; route to higher oligomers Carbohydr Res. 2007 Dec 10;342(17):2649-56.
5: Grosse M, Strauss E, Krings U, Berger RG. Response of the sesquiterpene synthesis in submerged cultures of the Basidiomycete Tyromyces floriformis to the medium composition Mycologia. 2019 Nov-Dec;111(6):885-894.
6: Teramoto K, Tsutsui S, Sato T, Fujimoto Z, Kaneko S. Substrate Specificities of GH8, GH39, and GH52 β-xylosidases from Bacillus halodurans C-125 Toward Substituted Xylooligosaccharides Appl Biochem Biotechnol. 2021 Apr;193(4):1042-1055.
7: McCleary BV, McKie VA, Draga A, Rooney E, Mangan D, Larkin J. Hydrolysis of wheat flour arabinoxylan, acid-debranched wheat flour arabinoxylan and arabino-xylo-oligosaccharides by β-xylanase, α-L-arabinofuranosidase and β-xylosidase Carbohydr Res. 2015 Apr 30;407:79-96.
8: Pastell H, Virkki L, Harju E, Tuomainen P, Tenkanen M. Presence of 1–>3-linked 2-O-beta-d-xylopyranosyl-alpha-l-arabinofuranosyl side chains in cereal arabinoxylans Carbohydr Res. 2009 Dec 14;344(18):2480-8.
9: Miyanaga A, Koseki T, Miwa Y, Mese Y, Nakamura S, Kuno A, Hirabayashi J, Matsuzawa H, Wakagi T, Shoun H, Fushinobu S. The family 42 carbohydrate-binding module of family 54 alpha-L-arabinofuranosidase specifically binds the arabinofuranose side chain of hemicellulose Biochem J. 2006 Nov 1;399(3):503-11.
10: Mamiya A, Sakka M, Kosugi A, Katsuzaki H, Tanaka A, Kunitake E, Kimura T, Sakka K. Significance of a family-6 carbohydrate-binding module in a modular feruloyl esterase for removing ferulic acid from insoluble wheat arabinoxylan Enzyme Microb Technol. 2020 Aug;138:109546.

Products Related to 32-α-L-Arabinofuranosyl-xylobiose (A3X) can be found at Carbohydrates

Additional information

Weight 48 oz
Dimensions 8 × 8 × 8 in

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