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α-Galactosidases and their applications in biotransformations

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Pages 79-89 | Published online: 11 Jul 2009

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Maria C. Vaz Patto, Ryszard Amarowicz, Alberta N. A. Aryee, Joyce I. Boye, Hyun-Jung Chung, Maria A. Martín-Cabrejas & Claire Domoney. (2015) Achievements and Challenges in Improving the Nutritional Quality of Food Legumes. Critical Reviews in Plant Sciences 34:1-3, pages 105-143.
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Priti Katrolia, Eranna Rajashekhara, Qiaojuan Yan & Zhengqiang Jiang. (2014) Biotechnological potential of microbial α-galactosidases. Critical Reviews in Biotechnology 34:4, pages 307-317.
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P. Aleksieva, B. Tchorbanov & L. Nacheva. (2010) High-Yield Production of Alpha-Galactosidase Excreted from Penicillium Chrysogenum and Aspergillus Niger. Biotechnology & Biotechnological Equipment 24:1, pages 1620-1623.
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Abidemi Ojo. (2023) An Overview of Lignocellulose and Its Biotechnological Importance in High-Value Product Production. Fermentation 9:11, pages 990.
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Yu Wen, Jinglong Zhou, Hongjie Feng, Wanqing Sun, Yalin Zhang, Lihong Zhao, Yong Cheng, Zili Feng, Heqin Zhu & Feng Wei. (2022) VdGAL4 Modulates Microsclerotium Formation, Conidial Morphology, and Germination To Promote Virulence in Verticillium dahliae . Microbiology Spectrum.
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Mohammad Amin Shoarnaghavi, Arti Mishra, Arian Amirifar, Smruthi Sagarika Mahapatra, Khatereh Nobaharan, Arash Hemati, Behnam Asgari Lajayer & Tess Astatkie. (2022) Soil algae enzymes and their biotechnological applications. Systems Microbiology and Biomanufacturing 2:4, pages 589-606.
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Jialing Wang, Xuefei Cao, Weihao Chen, Jiaxing Xu & Bin Wu. (2021) Identification and Characterization of a Thermostable GH36 α-Galactosidase from Anoxybacillus vitaminiphilus WMF1 and Its Application in Synthesizing Isofloridoside by Reverse Hydrolysis. International Journal of Molecular Sciences 22:19, pages 10778.
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Songze Ke, Yanlei Yu, Qiaoli Xu, Bo Zhang, Sijia Wang, Weihua Jin, Bin Wei & Hong Wang. (2021) Composition-Activity Relationships of Polysaccharides from Saccharina japonica in Regulating Gut Microbiota in Short-Term High-Fat Diet-Fed Mice . Journal of Agricultural and Food Chemistry 69:37, pages 11121-11130.
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Patrick Weber, Roland Fischer, Seyed A. Nasseri, Arnold E. Stütz, Martin Thonhofer, Stephen G. Withers, Andreas Wolfsgruber & Tanja M. Wrodnigg. (2021) New α-galactosidase-inhibiting aminohydroxycyclopentanes. RSC Advances 11:26, pages 15943-15951.
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Yongtao Fei, WenJuan Jiao, Ying Wang, Jinglong Liang, Gongliang Liu & Li Li. (2020) Cloning and expression of a novel α-galactosidase from Lactobacillus amylolyticus L6 with hydrolytic and transgalactosyl properties. PLOS ONE 15:7, pages e0235687.
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Sheng-Chia Chen, Szu-Pei Wu, Yu-Yung Chang, Tzann-Shun Hwang, Tzong-Huei Lee & Chun-Hua Hsu. (2020) Crystal Structure of α-Galactosidase from Thermus thermophilus : Insight into Hexamer Assembly and Substrate Specificity . Journal of Agricultural and Food Chemistry 68:22, pages 6161-6169.
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Michele Rigon Spier, Bianca Peron-Schlosser, Luana Cristina Paludo, Luis Alberto Gallo-García & Cristina Maria Zanette. 2020. Handbook of Microalgae-Based Processes and Products. Handbook of Microalgae-Based Processes and Products 687 706 .
Ewelina T. Rubin, Shu Cheng, Amanda L. Montalbano, Susanne Menden-Deuer & Tatiana A. Rynearson. (2019) Transcriptomic Response to Feeding and Starvation in a Herbivorous Dinoflagellate. Frontiers in Marine Science 6.
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Ravichandran Rathna, Ekambaram Nakkeeran, Sunita Varjani & Bethu Madhumitha. 2019. Green Bio-processes. Green Bio-processes 305 321 .
Ruili Zhao, Rui Zhao, Yishuai Tu, Xiaoming Zhang, Liping Deng & Xiangdong Chen. (2018) A novel α-galactosidase from the thermophilic probiotic Bacillus coagulans with remarkable protease-resistance and high hydrolytic activity. PLOS ONE 13:5, pages e0197067.
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Dimitri Alvarez-Dorta, Yoan Brissonnet, Amélie Saumonneau, David Deniaud, Julien BernardXibo YanCharles Tellier, Franck Daligault & Sébastien G. Gouin. (2017) Magnetic Nanoparticles Coated with Thiomannosides or Iminosugars to Switch and Recycle Galactosidase Activity. ChemistrySelect 2:29, pages 9552-9556.
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Areum Lee, Kyoung-Hwa Choi, Dahye Yoon, Suhkmann Kim & Jaeho Cha. (2017) Characterization of a thermostable glycoside hydrolase family 36 α-galactosidase from Caldicellulosiruptor bescii. Journal of Bioscience and Bioengineering 124:3, pages 289-295.
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Vladimír Mastihuba, Mária Mastihubová, Miroslav Belák, Jana Dudíková, Elena Karnišová Potocká & Ladislav Petruš. (2017) Preparation of α-galactooligoglycosides by cell walls from Cryptococcus laurentii using a novel α-galactosyl donor. Tetrahedron: Asymmetry 28:8, pages 1089-1094.
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Bruno dos Santos Alves Figueiredo Brasil, Félix Gonçalves de Siqueira, Thaís Fabiana Chan Salum, Cristina Maria Zanette & Michele Rigon Spier. (2017) Microalgae and cyanobacteria as enzyme biofactories. Algal Research 25, pages 76-89.
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Junpei Zhou, Yu Liu, Qian Lu, Rui Zhang, Qian Wu, Chunyan Li, Junjun Li, Xianghua Tang, Bo Xu, Junmei Ding, Nanyu Han & Zunxi Huang. (2016) Characterization of a Glycoside Hydrolase Family 27 α-Galactosidase from Pontibacter Reveals Its Novel Salt–Protease Tolerance and Transglycosylation Activity . Journal of Agricultural and Food Chemistry 64:11, pages 2315-2324.
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Junpei Zhou, Qian Lu, Rui Zhang, Yiyan Wang, Qian Wu, Junjun Li, Xianghua Tang, Bo Xu, Junmei Ding & Zunxi Huang. (2016) Characterization of two glycoside hydrolase family 36 α-galactosidases: Novel transglycosylation activity, lead–zinc tolerance, alkaline and multiple pH optima, and low-temperature activity. Food Chemistry 194, pages 156-166.
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Weiwei Zhang, Fang Du, Li Wang, Liyan Zhao, Hexiang Wang & Tzi Ng. (2015) Hydrolysis of Oligosaccharides by a Thermostable α-Galactosidase from Termitomyces eurrhizus. International Journal of Molecular Sciences 16:12, pages 29226-29235.
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Daniel Menezes-Blackburn & Ralf Greiner. 2015. Functional Polymers in Food Science. Functional Polymers in Food Science 47 73 .
K. S. Bobrov, A. S. Borisova, E. V. Eneyskaya, D. R. Ivanen, K. A. Shabalin, A. A. Kulminskaya & G. N. Rychkov. (2013) Improvement of the efficiency of transglycosylation catalyzed by α-galactosidase from Thermotoga maritima by protein engineering. Biochemistry (Moscow) 78:10, pages 1112-1123.
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Hynek Mrázek, Oldřich Benada, Petr Man, Ondřej Vaněk, Vladimír Křen, Karel Bezouška & Lenka Weignerová. (2012) Facile production of Aspergillus niger α-N-acetylgalactosaminidase in yeast. Protein Expression and Purification 81:1, pages 106-114.
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Joana Gasperazzo Ferreira, Angélica Pataro Reis, Valéria Monteze Guimarães, Daniel Luciano Falkoski, Lílian da Silva Fialho & Sebastião Tavares de Rezende. (2011) Purification and Characterization of Aspergillus terreus α-Galactosidases and Their Use for Hydrolysis of Soymilk Oligosaccharides. Applied Biochemistry and Biotechnology 164:7, pages 1111-1125.
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N. Kulik, L. Weignerova, T. Filipi, P. Pompach, P. Novak, H. Mrazek, K. Slamova, K. Bezouska, V. Kren & R. Ettrich. (2010) The  -galactosidase type A gene aglA from Aspergillus niger encodes a fully functional  -N-acetylgalactosaminidase. Glycobiology 20:11, pages 1410-1419.
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Anila Rajan & Giridhar R. Nair. (2010) Production of soya milk containing low flatulence-causing oligosaccharides in a packed bed reactor using immobilised α-galactosidase. International Journal of Food Science & Technology 45:10, pages 2023-2031.
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Mieke Vanhaecke, Natalia Dyubankova, Eveline Lescrinier & Wim Van den Ende. (2010) Metabolism of galactosyl-oligosaccharides in Stellaria media – Discovery of stellariose synthase, a novel type of galactosyltransferase. Phytochemistry 71:10, pages 1095-1103.
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