論文 |
No. | 論文タイトル URL, 誌名(出版物名), 巻( 号), 開始ページ- 終了ページ, 出版年月, DOI
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1 |
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2 | Morphological difference of Escherichia coli non-heme ferritin iron cores reconstituted in the presence and absence of inorganic phosphate , Journal of Biological Inorganic Chemistry, 27( 6), 583- 594, 2022年09月, https://doi.org/10.1007/s00775-022-01952-5
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3 | In vitro assembly of Haemophilus influenzae adhesin transmembrane domain and studies on the electrostatic repulsion at the interface , Biophysical Reviews, 11, 303- 309, 2019年06月01日, https://doi.org/10.1007/s12551-019-00535-0
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4 |
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5 |
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6 | β-Strand twisting/bending in soluble and transmembrane β-barrel structures , Proteins: Structure, Function and Bioinformatics, 86, 1231- 1241, 2018年12月01日, https://doi.org/10.1002/prot.25576
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7 | Optimization of Haemophilus influenzae adhesin transmembrane domain expression in Escherichia coli , Protein Expression and Purification, 145, 19- 24, 2018年05月01日, https://doi.org/10.1016/j.pep.2017.12.009
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8 | Electrostatic Repulsion between Unique Arginine Residues Is Essential for the Efficient in Vitro Assembly of the Transmembrane Domain of a Trimeric Autotransporter , BIOCHEMISTRY, 56( 15), 2139- 2148, 2017年04月, https://doi.org/10.1021/acs.biochem.6b01130
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9 | Residual structures in the unfolded state of starch-binding domain of glucoamylase revealed by near-UV circular dichroism and protein engineering techniques , BIOCHIMICA ET BIOPHYSICA ACTA-PROTEINS AND PROTEOMICS, 1864( 10), 1464- 1472, 2016年10月, https://doi.org/10.1016/j.bbapap.2016.05.002
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11 |
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12 |
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13 |
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14 | Effect of non-native helix destabilization on the folding of equine β-lactoglobulin , Journal of Biochemistry, 156( 5), 291- 297, 2014年11月, https://doi.org/10.1093/jb/mvu043
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15 |
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16 | Local sequence of protein β-strands influences twist and bend angles , Proteins: Structure, Function and Bioinformatics, 82( 7), 1484- 1493, 2014年07月, https://doi.org/10.1002/prot.24518
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17 | Relationship Between Chain Collapse and Secondary Structure Formation in a Partially Folded Protein , BIOPOLYMERS, 101( 6), 651- 658, 2014年06月, https://doi.org/10.1002/bip.22433
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18 | Delineation of Solution Burst-Phase Protein Folding Events by Encapsulating the Proteins in Silica Gels , BIOCHEMISTRY, 53( 23), 3858- 3866, 2014年06月, https://doi.org/10.1021/bi5003647
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19 |
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20 |
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21 |
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22 |
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23 |
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24 | A native disulfide stabilizes non-native helical structures in partially folded states of equine β-lactoglobulin , Biochemistry, 50( 49), 10590- 10597, 2011年12月, https://doi.org/10.1021/bi2013239
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25 |
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26 |
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27 |
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28 |
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29 |
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30 | Correction to the article "non-native α-helix formation is not necessary for folding of lipocalin: Comparison of burst-phase folding between tear lipocalin and β-lactoglobulin" (Proteins: Structute, Function and Bioformatics (2009) 76, (226-236)) , Proteins: Structure, Function and Bioinformatics, 77( 4), 1015- 1015, 2009年12月, https://doi.org/10.1002/prot.22593
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31 | Fatty Acids Bound to Recombinant Tear Lipocalin and Their Role in Structural Stabilization , JOURNAL OF BIOCHEMISTRY, 146( 3), 343- 350, 2009年09月, https://doi.org/10.1093/jb/mvp076
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32 | Non-native α-helix formation is not necessary for folding of lipocalin: Comparison of burst-phase folding between tear lipocalin and β-lactoglobulin , Proteins: Structure, Function and Bioinformatics, 76( 1), 226- 236, 2009年07月, https://doi.org/10.1002/prot.22340
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33 |
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34 |
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35 |
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36 |
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37 | OLIGAMI: OLIGomer Architecture and Molecular Interface , The Open Bioinformatics Journal, 2( 1), 50- 53, 2008年09月,
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38 |
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39 |
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40 |
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41 |
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42 | Degradation of DNA into 5′-monodeoxyribonucleotides in the presence of Mn2+ ions , Bioscience, Biotechnology and Biochemistry, 71( 11), 2670- 2679, 2007年11月, https://doi.org/10.1271/bbb.70260
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43 |
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44 | Chloride-ion concentration dependence of molecular dimension in the acid-denatured state of equine β-lactoglobulin , Journal of Applied Crystallography, 40, S213- S216, 2007年04月, https://doi.org/10.1107/S0021889807008278
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45 |
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46 |
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47 |
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48 |
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49 |
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50 | Proline scanning mutagenesis reveals non-native fold in the molten globule state of equine β-lactoglobulin , Biochemistry, 45( 51), 15468- 15473, 2006年12月, https://doi.org/10.1021/bi061420p
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51 | Structural and thermodynamic consequences of removal of a conserved disulfide bond from equine β-lactoglobulin , Proteins: Structure, Function and Genetics, 63( 3), 595- 602, 2006年05月, https://doi.org/10.1002/prot.20905
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52 | 1P128 Role of an off-barrel strand for the structural stabilization of equine β-lactoglobulin(3. Protein folding and misfolding (1),Poster Session,Abstract,Meeting Program of EABS & BSJ 2006) , 生物物理, 46( 2), S178- , 2006年, https://doi.org/10.2142/biophys.46.S178_4
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53 | 1P102 Comparison of burst phase folding intermediates of tear lipocalin and β-lactoglobulin(3. Protein folding and misfolding (I),Poster Session,Abstract,Meeting Program of EABS & BSJ 2006) , 生物物理, 46( 2), S172- , 2006年, https://doi.org/10.2142/biophys.46.S172_2
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54 |
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55 |
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56 |
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57 | Thermal stabilization of penicillolysin, a thermolabile 19 kDa Zn2+-protease, obtained by site-directed mutagenesis , PROTEIN ENGINEERING DESIGN & SELECTION, 17( 3), 261- 266, 2004年03月, https://doi.org/10.1093/protein/gzh034
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58 | Substrate specificities of deuterolysin from aspergillus oryzae and electron paramagnetic resonance measurement of cobalt-substituted deuterolysin , Bioscience, Biotechnology and Biochemistry, 67( 2), 264- 270, 2003年01月01日, https://doi.org/10.1271/bbb.67.264
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59 | Construction and characterization of β-lactoglobulin chimeras , Proteins: Structure, Function and Genetics, 49( 3), 297- 301, 2002年11月, https://doi.org/10.1002/prot.10223
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60 |
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61 |
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62 |
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63 |
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64 |
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65 |
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66 | Molecular and enzymic properties of recombinant 1,2-α-mannosidase from Aspergillus saitoi overexpressed in Aspergillus oryzae cells , Biochemical Journal, 339, 589- 597, 1999年05月, https://doi.org/10.1042/0264-6021:3390589
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67 | Folding-unfolding equilibrium and kinetics of equine β-lactoglobulin: Equivalence between the equilibrium molten globule state and a burst-phase folding intermediate , Biochemistry, 38( 14), 4455- 4463, 1999年04月, https://doi.org/10.1021/bi982683p
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68 |
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69 |
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70 |
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71 | Remarkable destabilization of recombinant α-lactalbumin by an extraneous N-terminal methionyl residue , Protein Engineering, 11( 5), 333- 335, 1998年05月,
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72 |
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73 | Conformational studies of peptides spanning the helical sequence in the molten globule alpha-lactalbumin , PEPTIDES, , 94- 95, 1998年,
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74 |
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75 | Studies of Disulfide Bond Reduction of Pigeon and Japanese Quail Lysozymes. , Reports on Progress in Polymer Physics in Japan, 40, 617- 618, 1997年,
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76 |
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77 |
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78 | Interation of GroEL and α-lactalbumin Molten Globule , Reports on Progress in Polymer Physics in Japan, 39, 625- 628, 1996年,
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79 |
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80 |
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81 |
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82 | APPROPRIATENESS OF DSS AND TSP AS INTERNAL REFERENCES FOR H-1-NMR STUDIES OF MOLTEN GLOBULE PROTEINS IN AQUEOUS-MEDIA , JOURNAL OF BIOMOLECULAR NMR, 4( 6), 859- 862, 1994年11月, https://doi.org/10.1007/BF00398414
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83 |
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84 |
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85 |
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86 | Contribution of the 6-120 Disulfide Bond of β-Lactalbumin to the Stabilities of its Native and Molten Globule States , Biochemistry, 31( 50), 12695- 12700, 1992年02月01日, https://doi.org/10.1021/bi00165a021
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87 | Conformational Study of Lactoferricin in Aqueous Solutions , Reports on Progress in Polymer Physics in Japan, 35, 665- 666, 1992年,
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88 | Two-Dimensional 1H-NMR Studies on -Lactalbumin in the Native and Molten Globule States , Reports on Progress in Polymer Physics in Japan, 35, 663- 664, 1992年,
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89 | Kinetics of Disulfide Bond Reduction in α-Lactalbumin by Dithiothreitol and Molecular Basis of Superreactivity of the Cys6-Cys120 Disulfide Bond , Biochemistry, 29( 36), 8240- 8249, 1990年09月, https://doi.org/10.1021/bi00488a007
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90 |
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91 | Innocuous character of [ethylenebis(oxyethylenenitrilo)]tetraacetic acid and EDTA as metal-ion buffers in studying Ca 2+ binding by α-lactalbumin , Journal of Biological Chemistry, 261( 19), 8824- 8829, 1986年07月,
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92 |
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93 | Evidence for Identity between the Equilibrium Unfolding Intermediate and a Transient Folding Intermediate: A Comparative Study of the Folding Reactions of α-Lactalbumin and Lysozyme , Biochemistry, 25( 22), 6965- 6972, 1986年, https://doi.org/10.1021/bi00370a034
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94 |
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