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Effects of salts on the interaction of 8-anilinonaphthalene 1-sulphonate and thermolysin.
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- Bioscience, Biotechnology & Biochemistry, 2014, v. 78, n. 9, p. 1522, doi. 10.1080/09168451.2014.923299
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Effects of heparin and cholesterol sulfate on the activity and stability of human matrix metalloproteinase 7.
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- Bioscience, Biotechnology & Biochemistry, 2014, v. 78, n. 1, p. 41, doi. 10.1080/09168451.2014.878213
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A new method for the extracellular production of recombinant thermolysin by co-expressing the mature sequence and pro-sequence in Escherichia coli.
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- PEDS: Protein Engineering, Design & Selection, 2007, v. 20, n. 8, p. 375, doi. 10.1093/protein/gzm031
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Further Stabilization of Leu Mutant Thermolysins by Mutation of an Autodegradation Site.
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- Applied Biochemistry & Biotechnology, 2012, v. 166, n. 3, p. 735, doi. 10.1007/s12010-011-9462-1
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Effects of Conversion of the Zinc-Binding Motif Sequence of Thermolysin, HEXXH, to That of Dipeptidyl Peptidase III, HEXXXH, on the Activity and Stability of Thermolysin.
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- Bioscience, Biotechnology & Biochemistry, 2013, v. 77, n. 9, p. 1901, doi. 10.1271/bbb.130360
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Effects of Mutations of Thermolysin, Asnll6 to Asp and Aspl50 to Glu, on Salt-Induced Activation and Stabilization.
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- Bioscience, Biotechnology & Biochemistry, 2013, v. 77, n. 4, p. 741, doi. 10.1271/bbb.120865
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Stabilization of Bovine Intestine Alkaline Phosphatase by Sugars.
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- Bioscience, Biotechnology & Biochemistry, 2012, v. 76, n. 1, p. 95, doi. 10.1271/bbb.110553
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Effects of Polyethylene Glycol on Bovine Intestine Alkaline Phosphatase Activity and Stability.
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- Bioscience, Biotechnology & Biochemistry, 2011, v. 75, n. 11, p. 2132, doi. 10.1271/bbb.110403
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Comparison of the Thermal Stabilities of the αβ Heterodimer and the α Subunit of Avian Myeloblastosis Virus Reverse Transcriptase.
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- Bioscience, Biotechnology & Biochemistry, 2011, v. 75, n. 8, p. 1618, doi. 10.1271/BBB.110238
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Analysis of the Mechanism of Inhibition of Human Matrix Metalloproteinase 7 (MMP-7) Activity by Green Tea Catechins.
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- Bioscience, Biotechnology & Biochemistry, 2011, v. 75, n. 8, p. 1564, doi. 10.1271/bbb.110257
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Chemiluminescent Enzyme Immunoassay for Measuring Leptin.
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- Bioscience, Biotechnology & Biochemistry, 2011, v. 75, n. 4, p. 752, doi. 10.1271/bbb.100885
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Expression in Escherichia coli, Refolding, and Purification of the Recombinant Mature Form of Human Matrix Metalloproteinase 7 (MMP-7).
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- Bioscience, Biotechnology & Biochemistry, 2010, v. 74, n. 12, p. 2515, doi. 10.1271/bbb.100537
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Effects of Site-Directed Mutagenesis of the Loop Residue of the N-Terminal Domain Gly117 of Thermolysin on Its Catalytic Activity.
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- Bioscience, Biotechnology & Biochemistry, 2010, v. 74, n. 12, p. 2457, doi. 10.1271/bbb.100536
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Effects of Organic Solvents on the Reverse Transcription Reaction Catalyzed by Reverse Transcriptases from Avian Myeloblastosis Virus and Moloney Murine Leukemia Virus.
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- Bioscience, Biotechnology & Biochemistry, 2010, v. 74, n. 9, p. 1925, doi. 10.1271/bbb.100337
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The Structural Requirements of Matriptase in Its Ectodomain Release in Polarized Epithelial Cells.
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- Bioscience, Biotechnology & Biochemistry, 2010, v. 74, n. 6, p. 1295, doi. 10.1271/bbb.100074
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Matriptase Does Not Require Hepatocyte Growth Factor Activator Inhibitor Type-i1 for Activation in an Epithelial Cell Expression Model.
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- Bioscience, Biotechnology & Biochemistry, 2010, v. 74, n. 4, p. 848, doi. 10.1271/bbb.90696
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Insight into the Mechanism of the Stabilization of Moloney Murine Leukaemia Virus Reverse Transcriptase by Eliminating RNase H Activity.
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- Bioscience, Biotechnology & Biochemistry, 2010, v. 74, n. 2, p. 440, doi. 10.1271/bbb.90777
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Gene Cloning, Bacterial Expression, and Purification of a Novel Rice (Oryza sativa L.) Ubiquitin-Related Protein, RURM1.
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- Bioscience, Biotechnology & Biochemistry, 2010, v. 74, n. 2, p. 430, doi. 10.1271/bbb.90692
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The Occurrence of Matriptase C-Terminal Fragments on the Apical and Basolateral Sides of Madin-Darby Canine Kidney Epithelial Cells.
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- Bioscience, Biotechnology & Biochemistry, 2009, v. 73, n. 11, p. 2538, doi. 10.1271/bbb.90431
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The Activity of a Type II Transmembrane Serine Protease, Matriptase, Is Dependent Solely on the Catalytic Domain.
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- Bioscience, Biotechnology & Biochemistry, 2009, v. 73, n. 2, p. 454, doi. 10.1271/bbb.80713
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Improvement in Performance of Affinity Gels Containing Gly-D-Phe as a Ligand to Thermolysin Due to Increasing the Spacer Chain Length.
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- Bioscience, Biotechnology & Biochemistry, 2007, v. 71, n. 8, p. 2083, doi. 10.1271/bbb.70178
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Purification to Homogeneity of a Neutral Metalloproteinase from Streptomyces caespitosus.
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- Bioscience, Biotechnology & Biochemistry, 2007, v. 71, n. 7, p. 1773, doi. 10.1271/bbb.70056
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Inhibitory Effects of Alcohols on the Activity of Human Matrix Metalloproteinase 7 (Matrilysin).
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- Bioscience, Biotechnology & Biochemistry, 2004, v. 68, n. 12, p. 2649, doi. 10.1271/bbb.68.2649
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Detection of Antigen-antibody Reaction Using a fluorescent Probe and Its Application to Homogeneous Competitive-type Immunoassay for Insulin.
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- Bioscience, Biotechnology & Biochemistry, 2004, v. 68, n. 10, p. 2190, doi. 10.1271/bbb.68.2190
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- Article
Substrate-dependent Activation of Thermolysin by Salt.
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- Bioscience, Biotechnology & Biochemistry, 2004, v. 68, n. 8, p. 1811, doi. 10.1271/bbb.68.1811
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- Article
Antioxidative Effects of Glycosyl-ascorbic Acids Synthesized by Maltogenic Amylase to Reduce Lipid Oxidation and Volatiles Production in Cooked Chicken Meat.
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- Bioscience, Biotechnology & Biochemistry, 2004, v. 68, n. 1, p. 36, doi. 10.1271/bbb.68.36
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Purification and Characterization of Purple Acid Phosphatase PAP1 from Dry Powder of Sweet Potato.
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- Bioscience, Biotechnology & Biochemistry, 2003, v. 67, n. 7, p. 1609, doi. 10.1271/bbb.67.1609
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Differential Scanning Calorimetry of the Effects of Ca[sup 2+] on the Thermal Unfolding of Pseudomonas cepacia Lipase.
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- Bioscience, Biotechnology & Biochemistry, 2003, v. 67, n. 1, p. 207, doi. 10.1271/bbb.67.207
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Interaction of wheat β-amylase with maltose and glucose as examined by fluorescence.
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- Journal of Biochemistry, 2013, v. 154, n. 1, p. 85, doi. 10.1093/jb/mvt029
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Roles of CUB and LDL receptor class A domain repeats of a transmembrane serine protease matriptase in its zymogen activation.
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- Journal of Biochemistry, 2013, v. 153, n. 1, p. 51, doi. 10.1093/jb/mvs118
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Effects of site-directed mutagenesis in the N-terminal domain of thermolysin on its stabilization.
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- Journal of Biochemistry, 2013, v. 153, n. 1, p. 85, doi. 10.1093/jb/mvs126
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Effects of site-directed mutagenesis of Asn116 in the β-hairpin of the N-terminal domain of thermolysin on its activity and stability.
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- Journal of Biochemistry, 2012, v. 152, n. 3, p. 231, doi. 10.1093/jb/mvs064
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A possibility of a protein-bound water molecule as the ionizable group responsible for pKe at the alkaline side in human matrix metalloproteinase 7 activity.
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- Journal of Biochemistry, 2012, v. 151, n. 5, p. 501, doi. 10.1093/jb/mvs016
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Interaction of 8-anilinonaphthalene 1-sulphonate (ANS) and human matrix metalloproteinase 7 (MMP-7) as examined by MMP-7 activity and ANS fluorescence.
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- Journal of Biochemistry, 2012, v. 151, n. 5, p. 533, doi. 10.1093/jb/mvs025
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Tyr219 of human matrix metalloproteinase 7 is not critical for catalytic activity, but is involved in the broad pH-dependence of the activity.
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- Journal of Biochemistry, 2011, v. 150, n. 2, p. 183, doi. 10.1093/jb/mvr050
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Activation of matriptase zymogen.
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- Journal of Biochemistry, 2011, v. 150, n. 2, p. 123, doi. 10.1093/jb/mvr075
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A recombinant catalytic domain of matriptase induces detachment and apoptosis of small-intestinal epithelial IEC-6 cells cultured on laminin-coated surface.
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- Journal of Biochemistry, 2010, v. 148, n. 6, p. 721, doi. 10.1093/jb/mvq108
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The optimal activity of a pseudozymogen form of recombinant matriptase under the mildly acidic pH and low ionic strength conditions.
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- Journal of Biochemistry, 2010, v. 147, n. 4, p. 485, doi. 10.1093/jb/mvp190
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Activation of a Membrane-Bound Serine Protease Matriptase on the Cell Surface.
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- Journal of Biochemistry, 2009, v. 146, n. 2, p. 273, doi. 10.1093/jb/mvp066
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Role of the Stem Domain of Matriptase in the Interaction with its Physiological Inhibitor, Hepatocyte Growth Factor Activator Inhibitor Type I.
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- Journal of Biochemistry, 2009, v. 145, n. 6, p. 783, doi. 10.1093/jb/mvp036
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Two Crystal Structures of Lysyl-tRNA Synthetase from Bacillus stearothermophilus in Complex with Lysyladenylate-Like Compounds: Insights into the Irreversible Formation of the Enzyme-Bound Adenylate of l-Lysine Hydroxamate.
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- Journal of Biochemistry, 2009, v. 145, n. 5, p. 555, doi. 10.1093/jb/mvp014
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Characterization of Moloney Murine Leukaemia Virus/Avian Myeloblastosis Virus Chimeric Reverse Transcriptases.
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- Journal of Biochemistry, 2009, v. 145, n. 3, p. 315, doi. 10.1093/jb/mvn166
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- Article
Insights into the Catalytic Roles of the Polypeptide Regions in the Active Site of Thermolysin and Generation of the Thermolysin Variants with High Activity and Stability.
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- Journal of Biochemistry, 2009, v. 145, n. 1, p. 103, doi. 10.1093/jb/mvn140
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Comparison of the Thermal Stabilities of Reverse Transcriptases from Avian Myeloblastosis Virus and Moloney Murine Leukaemia Virus.
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- Journal of Biochemistry, 2008, v. 143, n. 2, p. 261, doi. 10.1093/jb/mvm217
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Effects of Neutral Salts and Alcohols on the Activity of Streptomyces caespitosus Neutral Protease.
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- Journal of Biochemistry, 2007, v. 142, n. 3, p. 317, doi. 10.1093/jb/mvm134
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Effects of Site-directed Mutagenesis of the Surface Residues Gln128 and Gln225 of Thermolysin on its Catalytic Activity.
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- Journal of Biochemistry, 2007, v. 141, n. 6, p. 835, doi. 10.1093/jb/mvm087
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Molecular Mechanism of the Inhibitory Effect of Cobalt Ion on Thermolysin Activity and the Suppressive Effect of Calcium Ion on the Cobalt Ion-dependent Inactivation of Thermolysin.
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- Journal of Biochemistry, 2007, v. 141, n. 6, p. 879, doi. 10.1093/jb/mvm089
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Kinetic Analysis of the Activation-and-Inhibition Dual Effects of Cobalt Ion on Thermolysin Activity.
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- Journal of Biochemistry, 2007, v. 141, n. 6, p. 843, doi. 10.1093/jb/mvm088
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- Article
Engineering of the pH-Dependence of Thermolysin Activity as Examined by Site-Directed Mutagenesis of Asn112 Located at the Active Site of Thermolysin.
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- Journal of Biochemistry, 2006, v. 139, n. 6, p. 1017, doi. 10.1093/jb/mvj112
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Comparison of Starch Hydrolysis Activity and Thermal Stability of Two Bacillus licheniformis α-Amylases and Insights into Engineering α-Amylase Variants Active under Acidic Conditions.
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- Journal of Biochemistry, 2006, v. 139, n. 6, p. 997, doi. 10.1093/jb/mvj113
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- Article