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164 related items for PubMed ID: 28317475
1. Characterization of a PA14 domain-containing galactofuranose-specific β-d-galactofuranosidase from Streptomyces sp. Matsunaga E, Higuchi Y, Mori K, Yairo N, Toyota S, Oka T, Tashiro K, Takegawa K. Biosci Biotechnol Biochem; 2017 Jul; 81(7):1314-1319. PubMed ID: 28317475 [Abstract] [Full Text] [Related]
3. Identification and characterization of β-d-galactofuranosidases from Aspergillus nidulans and Aspergillus fumigatus. Matsunaga E, Tanaka Y, Toyota S, Yamada H, Oka T, Higuchi Y, Takegawa K. J Biosci Bioeng; 2021 Jan; 131(1):1-7. PubMed ID: 33011078 [Abstract] [Full Text] [Related]
4. Galactofuranosidase from JHA 19 Streptomyces sp.: subcloning and biochemical characterization. Seničar M, Legentil L, Ferrières V, Eliseeva SV, Petoud S, Takegawa K, Lafite P, Daniellou R. Carbohydr Res; 2019 Jul 01; 480():35-41. PubMed ID: 31174175 [Abstract] [Full Text] [Related]
5. Draft Genome Sequence of Streptomyces sp. JHA26, a Strain That Harbors a PA14 Domain Containing β-d-Galactofuranosidase. Matsunaga E, Higuchi Y, Mori K, Tashiro K, Takegawa K. Genome Announc; 2017 Apr 13; 5(15):. PubMed ID: 28408688 [Abstract] [Full Text] [Related]
6. Fungal α-arabinofuranosidases of glycosyl hydrolase families 51 and 54 show a dual arabinofuranosyl- and galactofuranosyl-hydrolyzing activity. Tefsen B, Lagendijk EL, Park J, Akeroyd M, Schachtschabel D, Winkler R, van Die I, Ram AF. Biol Chem; 2012 Aug 13; 393(8):767-75. PubMed ID: 22944679 [Abstract] [Full Text] [Related]
8. Biochemical characterization of a glycoside hydrolase family 43 β-D-galactofuranosidase from the fungus Aspergillus niger. Bulmer GS, Yuen FW, Begum N, Jones BS, Flitsch SL, van Munster JM. Enzyme Microb Technol; 2023 Mar 13; 164():110170. PubMed ID: 36521309 [Abstract] [Full Text] [Related]
9. Identification and characterization of a novel β-D-galactosidase that releases pyruvylated galactose. Higuchi Y, Matsufuji H, Tanuma M, Arakawa T, Mori K, Yamada C, Shofia R, Matsunaga E, Tashiro K, Fushinobu S, Takegawa K. Sci Rep; 2018 Aug 13; 8(1):12013. PubMed ID: 30104607 [Abstract] [Full Text] [Related]
10. An extracellular beta-galactofuranosidase from Aspergillus niger and its use as a tool for glycoconjugate analysis. Wallis GL, Hemming FW, Peberdy JF. Biochim Biophys Acta; 2001 Feb 16; 1525(1-2):19-28. PubMed ID: 11342249 [Abstract] [Full Text] [Related]
13. Identification and characterization of the first β-1,3-d-xylosidase from a gram-positive bacterium, Streptomyces sp. SWU10. Phuengmaung P, Fujiwara D, Sukhumsirichart W, Sakamoto T. Enzyme Microb Technol; 2018 May 16; 112():72-78. PubMed ID: 29499784 [Abstract] [Full Text] [Related]
14. Draft Genome Sequence of Streptomyces sp. JHA19, a Strain That Possesses β-d-Galactofuranosidase Activity. Matsunaga E, Higuchi Y, Mori K, Tashiro K, Kuhara S, Takegawa K. Genome Announc; 2015 Oct 08; 3(5):. PubMed ID: 26450739 [Abstract] [Full Text] [Related]
15. Structure of the adenylation domain Thr1 involved in the biosynthesis of 4-chlorothreonine in Streptomyces sp. OH-5093-protein flexibility and molecular bases of substrate specificity. Scaglione A, Fullone MR, Montemiglio LC, Parisi G, Zamparelli C, Vallone B, Savino C, Grgurina I. FEBS J; 2017 Sep 08; 284(18):2981-2999. PubMed ID: 28704585 [Abstract] [Full Text] [Related]
19. Characterization of an exo-beta-1,3-D-galactanase from Streptomyces avermitilis NBRC14893 acting on arabinogalactan-proteins. Ichinose H, Kotake T, Tsumuraya Y, Kaneko S. Biosci Biotechnol Biochem; 2006 Nov 08; 70(11):2745-50. PubMed ID: 17090926 [Abstract] [Full Text] [Related]
20. Purification and characterization of a highly thermostable alpha-L-Arabinofuranosidase from Geobacillus caldoxylolyticus TK4. Canakci S, Belduz AO, Saha BC, Yasar A, Ayaz FA, Yayli N. Appl Microbiol Biotechnol; 2007 Jun 08; 75(4):813-20. PubMed ID: 17361432 [Abstract] [Full Text] [Related] Page: [Next] [New Search]