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Original Articles

Substrate Specificity of Aqualysin I, a Bacterial Thermophilic Alkaline Serine Protease from Thermus aquaticus YT-1: Comparison with Proteinase K, Subtilisin BPN′ and Subtilisin Carlsberg

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Pages 2161-2165 | Received 21 May 1998, Accepted 15 Jul 1998, Published online: 22 May 2014

Keep up to date with the latest research on this topic with citation updates for this article.

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Terumichi TANAKA, Yo KIKUCHI, Hiroshi MATSUZAWA & Takahisa OHTA. (2000) Application of a Metal Switch to Aqualysin I, a Subtilisin-type Bacterial Serine Protease, to the S3 Site Residues, Ser102 and Gly131. Bioscience, Biotechnology, and Biochemistry 64:9, pages 2008-2011.
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Terumichi TANAKA, Hiroshi MATSUZAWA & Takahisa OHTA. (1999) Substrate Specificity of Aqualysin I Altered by an Organic Solvent, DMSO. Bioscience, Biotechnology, and Biochemistry 63:2, pages 446-448.
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Articles from other publishers (9)

Fabian Falkenberg, Sophie Kohn, Michael Bott, Johannes Bongaerts & Petra Siegert. (2023) Biochemical characterisation of a novel broad pH spectrum subtilisin from Fictibacillus arsenicus DSM 15822 T . FEBS Open Bio 13:11, pages 2035-2046.
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Annelien E. Verbauwhede, Marlies A. Lambrecht, Ellen Fierens, Oksana Shegay, Kristof Brijs & Jan A. Delcour. (2019) Impact of aqualysin 1 peptidase from Thermus aquaticus on molecular scale changes in the wheat gluten network during bread baking. Food Chemistry 295, pages 599-606.
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Felix Urbat, Patrick Müller, Andreas Hildebrand, Daniel Wefers & Mirko Bunzel. (2019) Comparison and Optimization of Different Protein Nitrogen Quantitation and Residual Protein Characterization Methods in Dietary Fiber Preparations. Frontiers in Nutrition 6.
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Ana Toplak, Timo Nuijens, Peter J.L.M. Quaedflieg, Bian Wu & Dick B. Janssen. (2015) Peptide synthesis in neat organic solvents with novel thermostable proteases. Enzyme and Microbial Technology 73-74, pages 20-28.
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Hong Qiao, Alexander H. Soeriyadi, Bin Guan, Peter J. Reece & J. Justin Gooding. (2015) The analytical performance of a porous silicon Bloch surface wave biosensors as protease biosensor. Sensors and Actuators B: Chemical 211, pages 469-475.
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Ana Toplak, Bian Wu, Fabrizia Fusetti, Peter J. L. M. Quaedflieg & Dick B. Janssen. (2013) Proteolysin, a Novel Highly Thermostable and Cosolvent-Compatible Protease from the Thermophilic Bacterium Coprothermobacter proteolyticus. Applied and Environmental Microbiology 79:18, pages 5625-5632.
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. 2009. Class 3 Hydrolases. Class 3 Hydrolases 387 399 .
Shinji Mitsuiki, Misato Ichikawa, Takuji Oka, Masashi Sakai, Yasushi Moriyama, Yuka Sameshima, Masatoshi Goto & Kensuke Furukawa. (2004) Molecular characterization of a keratinolytic enzyme from an alkaliphilic Nocardiopsis sp. TOA-1. Enzyme and Microbial Technology 34:5, pages 482-489.
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Hiroshi Takagi, Mihoko Koga, Saori Katsurada, Yukihiro Yabuta, Ujwal Shinde, Masayori Inouye & Shigeru Nakamori. (2001) Functional analysis of the propeptides of subtilisin E and aqualysin I as intramolecular chaperones. FEBS Letters 508:2, pages 210-214.
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