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Original Articles

Molecular cloning, purification, and characterization of a novel thermostable cinnamoyl esterase from Lactobacillus helveticus KCCM 11223

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References

  • Acosta-Estrada, B.A.; Gutiérrez-Uribe, J.A.; Serna-Saldívar, S.O. Bound Phenolics in Foods, a Review. Food Chem. 2014, 152, 46–55.
  • El-Seedi, H.R.; El-Said, A.M.; Khalifa, S.A.M.; Göransson, U.; Bohlin, L.; Borg-Karlson, A.K.; Verpoorte, R. Biosynthesis, Natural Sources, Dietary Intake, Pharmacokinetic Properties, and Biological Activities Of Hydroxycinnamic Acids. J. Agric. Food Chem. 2012, 60, 10877–10895.
  • Gopalan, N.; Rodríguez-Duran, L.V.; Saucedo-Castaneda, G.; Madhavan Nampoothiri, K. Review on Technological and Scientific Aspects of Feruloyl Esterases: A Versatile Enzyme for Biorefining of Biomass. Bioresour. Technol. 2015, 193, 534–544.
  • Huang, D.W.; Shen, S.C.; Wu, J.S.B. Effects of Caffeic Acid and Cinnamic Acid on Glucose Uptake in Insulin-Resistant Mouse Hepatocytes. J. Agric. Food Chem. 2009, 57, 7687–7692.
  • Jeong, C.H.; Jeong, H.R.; Choi, G.N.; Kim, D.O.; Lee, U.; Heo, H.J. Neuroprotective and Anti-oxidant Effects of Caffeic Acid Isolated from Erigeron annuus Leaf. Chin. Med. 2011, 6, 25.
  • Oboh, G.; Agunloye, O.M.; Akinyemi, A.J.; Ademiluyi, A.O.; Adefegha, S.A. Comparative Study on the Inhibitory Effect of Caffeic and Chlorogenic Acids on Key Enzymes Linked to Alzheimer’s Disease and Some Pro-oxidant Induced Oxidative Stress in Rats’ Brain-In Vitro. Neurochem. Res. 2013, 38, 413–419.
  • Kim, J.H.; Baik, S.H. Properties of Recombinant Novel Cinnamoyl Esterase from Lactobacillus acidophilus F46 Isolated from Human Intestinal Bacterium. J. Mol. Catal. B Enzym. 2015, 116, 9–15.
  • Couteau, D.; McCartney, A.L.; Gibson, G.R.; Williamson, G.; Faulds, C.B. Isolation and Characterization of Human Colonic Bacteria Able to Hydrolyse Chlorogenic Acid. J. Appl. Microbiol. 2001, 90, 873–881.
  • Guglielmetti, S.; De Noni, I.; Caracciolo, F.; Molinari, F.; Parini, C.; Mora, D. Bacterial Cinnamoyl Esterase Activity Screening for the Production of a Novel Functional Food Product. Appl. Environ. Microbiol. 2008, 74, 1284–1288.
  • Lai, K.K.; Lorca, G.L.; Gonzalez, C.F. Biochemical Properties of Two Cinnamoyl Esterases Purified from a Lactobacillus johnsonii Strain Isolated from Stool Samples of Diabetes-Resistant Rats. Appl. Environ. Microbiol. 2009, 75, 5018–5024.
  • Shin, H.D.; Chen, R.R. A Type B Feruloyl Esterase from Aspergillus nidulans with Broad pH Applicability. Appl. Microbiol. Biotechnol. 2007, 73, 1323–1330.
  • Topakas, E.; Vafiadi, C.; Christakopoulos, P. Microbial Production, Characterization and Applications of Feruloyl Esterases. Process Biochem. 2007, 42, 497–509.
  • Udatha, D.G.; Kouskoumvekaki, I.; Olsson, L.; Panagiotou, G. The Interplay of Descriptor-Based Computational Analysis with Pharmacophore Modeling Builds the Basis for a Novel Classification Scheme for Feruloyl Esterases. Biotechnol. Adv. 2011, 29, 94–110.
  • Asther, M.; Alvarado, M.I.E.; Haon, M.; Navarro, D.; Asther, M.; Lesage-Meessen, L.; Record, E. Purification and Characterization of a Chlorogenic Acid Hydrolase from Aspergillus niger Catalysing the Hydrolysis of Chlorogenic Acid. J. Biotechnol. 2005, 115, 47–56.
  • Schöbel, B.; Pollmann, W. Isolation and Characterization of a Chlorogenic Acid Esterase from Aspergillus niger. Z. Naturforsch. 1980, 35(c), 209–212.
  • Barbe, C.; Dubourdieu, D. Characterisation and Purification of a Cinnamate Esterase from Aspergillus niger Industrial Pectinase Preparation. J. Sci. Food Agric. 1998, 78, 471–478.
  • Benoit, I.; Asther, M.; Bourne, Y.; Navarro, D.; Canaan, S.; Lesage-Meessen, L.; Herweijer, M.; Coutinho, P.M.; Asther, M.; Record, E. Gene Overexpression and Biochemical Characterization of the Biotechnologically Relevant Chlorogenic Acid Hydrolase from Aspergillus niger. Appl. Environ. Microbiol. 2007, 73, 5624–5632.
  • Okamura, S.; Watanabe, M. Purification and Properties of Hydroxycinnamic Acid Ester Hydrolase from Aspergillus japonicas. Agric. Biol. Chem. 1982, 46, 1839–1848.
  • Raimondi, S.; Anighoro, A.; Quartieri, A.; Amaretti, A.; Tomás-Barberán, F.A.; Rastelli, G.; Rossi, M. Role of Bifidobacteria in the Hydrolysis of Chlorogenic Acid. MicrobiologyOpen 2015, 4, 41–52.
  • Haki, G.D.; Rakshit, S.K. Developments in Industrially Important Thermostable Enzymes: A Review. Bioresour. Technol. 2003, 89, 17–34.
  • Koseki, T.; Fushinobu, S.; Ardiansyah; Shirakawa, H.; Komai, M. Occurrence, Properties, and Applications of Feruloyl Esterases. Appl. Microbiol. Biotechnol. 2009, 84, 803–810.
  • Zhang, S.B.; Pei, X.Q.; Wua, Z.L. Multiple Amino Acid Substitutions Significantly Improve the Thermostability of Feruloyl Esterase A from Aspergillus niger. Bioresour. Technol. 2012, 117, 140–147.
  • Donaghy, J.A.; Bronnenmeier, K.; Soto-Kelly, P.F.; McKay, A.M. Purification and Characterization of an Extracellular Feruloyl Esterase from the Thermophilic Anaerobe Clostridium stercorarium. J. Appl. Microbiol. 2000, 88, 458–466.
  • Rakotoarivonina, H.; Hermant, B.; Chabbert, B.; Touzel, J.P.; Remond, C. A Thermostable Feruloyl-Esterase from the Hemicellulolytic Bacterium Thermobacillus xylanilyticus Releases Phenolic Acids from Non-pretreated Plant Cell Walls. Appl. Microbiol. Biotechnol. 2011, 90, 541–552.
  • Kim, J.H.; Baik, S.H. Preparation and Characterization of Fermented Dandelion (Taraxacum officinale) Beverage Using Lactobacillus acidophilus F46 Having Cinnamoyl Esterase Activity. Food Sci. Biotechnol. 2015, 24, 583–593.
  • Yang, S.Q.; Tang, L.; Yan, Q.J.; Zhou, P.; Xu, H.B.; Jiang, Z.Q.; Zhang, P. Biochemical Characteristics and Gene Cloning of a Novel Thermostable Feruloyl Esterase from Chaetomium sp.. J. Mol. Catal. B: Enzym. 2013, 97, 328–336.
  • Lai, K.K.; Stogios, P.J.; Vu, C.; Xu, X.; Cui, H.; Molloy, S.; Savchenko, A.; Yakunin, A.; Gonzalez, C.F. An Inserted α/β Subdomain Shapes the Catalytic Pocket of Lactobacillus johnsonii Cinnamoyl Esterase. PLoS One 2011, 6, e23269.
  • Esteban-Torres, M.; Reverón, I.; Miguel Mancheño, J.; de las Rivas, B.; Muñoz, R. Characterization of a Feruloyl Esterase from Lactobacillus plantarum. Appl. Environ. Microbiol. 2013, 79, 5130–5136.
  • Ledent, P.; Duez, C.; Vanhove, M.; Lejeune, A.; Fonze, E.; Charlier, P.; Rhazi-Filali, F.; Thamm, I.; Guillaume, G.; Samyn, B.; Devreese, B.; Van Beeumen, J.; Lamotte-Brasseur, J.; Frere, J. Unexpected Influence of a C-Terminal-Fused His-tag on the Processing of an Enzyme and on the Kinetic and Folding Parameters. FEBS Lett. 1997, 413, 194–196.
  • Bondos, S.E.; Bicknell, A. Detection and Prevention of Protein Aggregation Before, During, and After Purification. Anal. Biochem. 2003, 316, 223–231.
  • Taverniti, V.; Guglielmetti, S. Health-Promoting Properties of Lactobacillus helveticus. Front. Microbiol. 2012, 3, 392.
  • Gupta, R.; Gupta, N.; Rathi, P. Bacterial Lipases: An Overview of Production, Purification and Biochemical Properties. Appl. Microbiol. Biotechnol. 2004, 64, 763–781.
  • Wang, X.; Geng, X.; Egashira, Y.; Sanada, H. Purification and Characterization of a Feruloyl Esterase from the Intestinal Bacterium Lactobacillus acidophilus. Appl. Environ. Microbiol. 2004, 70, 2367–2372.

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