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Original Articles

Extraction, purification, and biochemical characterization of serine protease from leaves of Abrus precatorius

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References

  • Rao, M.B.; Tanksale, A.M.; Ghatge, M.S.; Deshpande, V.V. Molecular and Biotechnological Aspects of Microbial Proteases. Microbiol. Mol. Biol. Rev. 1998, 62(3), 597–635.
  • Li, Q.; Yi, L.; Marek, P.; Iverson, B.L. Commercial Proteases: Present and Future. FEBS Lett. 2013, 587(8), 1155–1163.
  • Zaks, A. Industrial Biocatalysis. Curr. Opin. Chem. Biol. 2001, 5(2), 130–136.
  • Feijoo-Siota, L.; Blasco, L.; Rodriguez-Rama, J.L.; Barros-Velazquez, J.; Miguel, T.; Sanchez-Perez, A.; Villa, T.G. Recent Patents on Microbial Proteases for the Dairy Industry. Recent Adv. DNA Gene Seq. 2014, 8(1), 44–55.
  • Kuddus, M.; Ramteke, P.W. Recent Developments in Production and Biotechnological Applications of Cold-active Microbial Proteases. Crit. Rev. Microbiol. 2012, 38(4), 330–338.
  • Gupta, R.; Rajput, R.; Sharma, R.; Gupta, N. Biotechnological Applications and Prospective Market of Microbial Keratinases. Appl. Microbiol. Biotechnol. 2013, 97(23), 9931–9940.
  • Gurung, N.; Ray, S.; Bose, S.; Rai, V. A Broader View: Microbial Enzymes and Their Relevance in Industries, Medicine, and Beyond. BioMed Res. Int. 2013, 2013, 329121.
  • Sarita Agrahari, N.S. Extraction and Characterization of Protease from Senesced Leaves of Papaya (Carica papaya) and It’s Application. Int. J. Genetic Eng. Biotechnol. 2014, 5(3073), 29–34.
  • Dubey, V.K.; Jagannadham, M.V. Procerain, A Stable Cysteine Protease from the Latex of Calotropis procera. Phytochemistry 2003, 62(7), 1057–1071.
  • Pavan, R.; Jain, S.; Shraddha; Kumar, A. Properties and Therapeutic Application of Bromelain: A Review. Biotechnol. Res. Int. 2012, 2012, 976203.
  • Tomar, R.; Kumar, R.; Jagannadham, M.V. A Stable Serine Protease, Wrightin, from the Latex of the Plant Wrightia tinctoria (Roxb.) R. Br.: Purification and Biochemical Properties. J. Agric. Food Chem. 2008, 56(4), 1479–1487.
  • Usha, R.; Singh, M. Proteases of Germinating Winged-bean (Psophocarpus tetragonolobus) Seeds: Purification and Characterization of an Acidic Protease. Biochem. J. 1996, 313(Pt 2), 423–429.
  • Beers, E.P.; Woffenden, B.J.; Zhao, C. Plant Proteolytic Enzymes: Possible Roles During Programmed Cell Death. Plant Mol. Biol. 2000, 44(3), 399–415.
  • Takeda, N.; Kistner, C.; Kosuta, S.; Winzer, T.; Pitzschke, A.; Groth, M.; Sato, S.; Kaneko, T.; Tabata, S.; Parniske, M. Proteases in Plant Root Symbiosis. Phytochemistry 2007, 68(1), 111–121.
  • Singh, S.J.; Singh, L.R.; Devi, S.K.; Singh, S.S.; Devi, C.B.; Rully, H. Purification and Characterization of a Thermostable Caseinolytic Serine Protease from the Latex of Euphorbia heterophylla L. Protein Pept. Lett. 2015, 22(9), 828–835.
  • Mehrnoush, A.; Mustafa, S.; Sarker, M.Z.; Yazid, A.M. Optimization of the Conditions for Extraction of Serine Protease from Kesinai Plant (Streblus asper) Leaves Using Response Surface Methodology. Molecules 2011, 16(11), 9245–9260.
  • Jinka, R.; Ramakrishna, V.; Rao, S.K.; Rao, R.P. Purification and Characterization of Cysteine Protease from Germinating Cotyledons of Horse Gram. BMC Biochem. 2009, 10, 28.
  • Matagne, A.; Bolle, L.; El Mahyaoui, R.; Baeyens-Volant, D.; Azarkan, M. The Proteolytic System of Pineapple Stems Revisited: Purification and Characterization of Multiple Catalytically Active Forms. Phytochemistry 2017, 138, 29–51.
  • Abdellatif, K.R.; Fadaly, W.A.; Azouz, A.A. Synthesis, Cyclooxygenase Inhibition, Anti-inflammatory Evaluation, and Ulcerogenic Liability of New 1,3,5-Triarylpyrazoline Derivatives Possessing a Methanesulfonyl Pharmacophore. Arch. Pharm. 2016, 349(10), 801–807.
  • Savane, T.S.; Kumar, S.; Janakiraman, V.N.; Kamalanathan, A.S.; Vijayalakshmi, M.A. Molecular Insight in the Purification of Immunoglobulin by Pseudobiospecific Ligand L-Histidine and Histidyl Moieties in Histidine Ligand Affinity Chromatography (HLAC) by Molecular Docking. J. Chromatogr. B 2016, 1021, 129–136.
  • Mukhopadhyay, S.; Panda, P.K.; Das, D.N.; Sinha, N.; Behera, B.; Maiti, T.K.; Bhutia, S.K. Abrus Agglutinin Suppresses Human Hepatocellular Carcinoma In Vitro and In Vivo by Inducing Caspase-mediated Cell Death. Acta Pharmacol. Sinica 2014, 35(6), 814–824.
  • Pazzetto, R.; Ferreira, S.B.; Santos, E.J.; Moriwaki, C.; Guedes, T.A.; Matioli, G. Preservation of Bacillus firmus Strain 37 and Optimization of Cyclodextrin Biosynthesis by Cells Immobilized on Loofa Sponge. Molecules 2012, 17(8), 9476–9488.
  • Raed, K.J. Isolation and Molecular Characterisation Xylanase Produced by Sporolactobacilli. Banat’s J. Biotechnol. 2016, 7(14), 30–37.
  • Laemmli, U.K. Cleavage of Structural Proteins During the Assembly of the Head of Bacteriophage T4. Nature 1970, 227(5259), 680–685.
  • Bradford, M.M. A Rapid and Sensitive Method for the Quantitation of Microgram Quantities of Protein Utilizing the Principle of Protein-dye Binding. Anal. Biochem. 1976, 72, 248–254.
  • Yildirim, V.; Baltaci, M.O.; Ozgencli, I.; Sisecioglu, M.; Adiguzel, A.; Adiguzel, G. Purification and Biochemical Characterization of a Novel Thermostable Serine Alkaline Protease from Aeribacillus pallidus C10: A Potential Additive for Detergents. J. Enzyme Inhib. Med. Chem. 2017, 32(1), 468–477.
  • Kazan, D.; Denizci, A.A.; Oner, M.N.; Erarslan, A. Purification and Characterization of a Serine Alkaline Protease from Bacillus clausii GMBAE 42. J. Ind. Microbiol. Biotechnol. 2005, 32(8), 335–344.
  • Xu, J.; Zhuang, Y.; Wu, B.; Su, L.; He, B. Calcium-ion-induced Stabilization of the Protease from Bacillus cereus WQ9–2 in Aqueous Hydrophilic Solvents: Effect of Calcium Ion Binding on the Hydration Shell and Intramolecular Interactions. J. Biol. Inorg. Chem. 2013, 18(2), 211–221.
  • Katz, B.A.; Clark, J.M.; Finer-Moore, J.S.; Jenkins, T.E.; Johnson, C.R.; Ross, M.J.; Luong, C.; Moore, W.R.; Stroud, R.M. Design of Potent Selective Zinc-mediated Serine Protease Inhibitors. Nature 1998, 391(6667), 608–612.
  • Mehrnoush, Amid; Mohd Yazid, Abdul Manap; Norkhanani, Zohdi Optimization of Processing Parameters for Extraction of Amylase Enzyme from Dragon (Hylocereus polyrhizus) Peel Using Response Surface Methodology. Sci. World. J., vol. 2014, Article ID 640949, 12 pages, 2014. DOI:10.1155/2014/640949

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