活動の記録

 三重大学
 1982〜2019


  学術論文



原著論文

1. Seiya Chiba, Keitaro Hiromi, Noshi Minamiura, Masatake Ohnishi, Tokuji Shimomura, Kazutsugu Suga, Toshihiko Suganuma, Akiyoshi Tanaka, Shin-ichi Tomioka, and Takehiko Yamamoto, Quantitative Study on Anomeric Forms of Glucose Produced by α-Glucosidases, J. Biochem., 85, 1135-1141 (1979) PubMed

2. Keitaro Hiromi, Akiyoshi Tanaka, and Masatake Ohnishi, Fluorometric Studies on the Binding of Gluconolactone, Glucose and Glucosides to the Subsites of Glucoamylase, Biochemistry, 21, 102-107 (1982) PubMed

3. Akiyoshi Tanaka, Masatake Ohnishi, and Keitaro Hiromi, Stopped-Flow Kinetic Studies on the Binding of Gluconolactone and Maltose to Glucoamylase, Biochemistry, 21, 107-113 (1982) PubMed

4. Akiyoshi Tanaka, Masatake Ohnishi, Keitaro Hiromi, Shigekazu Miyata, and Sawao Murao, Static and Kinetic Studies on the Binding of Streptomyces Trehalase Inhibitor SGI with Rhizopus Glucoamylase − Comparison with Glucose and Gluconolactone, J. Biochem., 91, 1-9 (1982) PubMed

5. Akiyoshi Tanaka, Takashi Yamashita, Masatake Ohnishi, and Keitaro Hiromi, Steady-State and Transient Kinetic Studies on the Binding of Maltooligosaccharides to Glucoamylase, J. Biochem., 93, 1037-1043 (1983) PubMed

6. Akiyoshi Tanaka, Yoshikazu Fukuchi, Masatake Ohnishi, Keitaro Hiromi, Shigeo Aibara, and Yuhei Morita, Fractionation of Isozymes and Determination of the Subsite Structure of Glucoamylase from Rhizopus niveus, Agric. Biol. Chem., 47, 573-580 (1983) pdf

7. Keitaro Hiromi, Masatake Ohnishi, and Akiyoshi Tanaka, Subsite Structure and Ligand Binding Mechanism of Glucoamylase, Mol. Cell. Biochem., 51, 79-95 (1983) PubMed

8. Masatake Ohnishi, Shigehiko Wada, Takashi Yamada, Akiyoshi Tanaka, and Keitaro Hiromi, Fluorometric Study on the Binding of Isomaltose and Maltose to Glucoamylase from Rhizopus niveus, J. Jpn. Soc. Starch Sci., 30, 57-61 (1983) abstract

9. Akiyoshi Tanaka, Masahide Ito, and Keitaro Hiromi, Equilibrium and Kinetic Studies on the Binding of Gluconolactone to Almond β-Glucosidase in the Absence and Presence of Glucose, J. Biochem., 100, 1379-1385 (1986) PubMed

10. Akiyoshi Tanaka, Mako Sugiura, Takako Hotta, Hiroshi Kurata, and Yasuyuki Ishihara, Steady-State Inhibitory Kinetic Studies on Almond β-Glucosidase-Catalyzed Reaction − Binding Sites of Monosaccharides, Agric. Biol. Chem., 53, 1401-1405 (1989) abstract

11. Patrick Connelly, Lily Ghosaini, Cui-Qing Hu, Shinichi Kitamura, Akiyoshi Tanaka, and Julian M. Sturtevant, A Differential Scanning Calorimetric Study of the Thermal Unfolding of Seven Mutant Forms of Phage T4 Lysozyme, Biochemistry, 30, 1887-1891 (1991) PubMed

12. Akiyoshi Tanaka, Differential Scanning Calorimetric Study of the Thermal Denaturation of Glucoamylase, Calorimetry and Thermal Analysis, 18, 77-80 (1991) abstract

13. Akiyoshi Tanaka, Differential Scanning Calorimetric Study of the Thermal Denaturation of Almond β-Glucosidase, Agric. Biol. Chem., 55, 2773-2776 (1991) abstract

14. Keitaro Hiromi, Hiroshi Nakatani, Akiyoshi Tanaka, and Hiroyuki Iwamoto, Construction of a Micro-Stopped-Flow Apparatus and Its Performance, Anal. Sci., 7, 819-821 (1991)

15. Cui-Qing Hu, Shinichi Kitamura, Akiyoshi Tanaka, and Julian M. Sturtevant, Differential Scanning Calorimetric Study of the Thermal Unfolding of Mutant Forms of Phage T4 Lysozyme, Biochemistry, 31, 1643-1647 (1992) PubMed

16. Akiyoshi Tanaka, John Flanagan, and Julian M. Sturtevant, Thermal Unfolding of Staphylococcal Nuclease and Several Mutant Forms Thereof Studied by Differential Scanning Calorimetry, Protein Sci., 2, 567-576 (1993) PubMed

17. Akiyoshi Tanaka and Shuichi Takeda, Subsite Structure of Rhizopus Glucoamylase for the Hydrolytic Reaction of Isomaltooligosaccharides, Biosci. Biotechnol. Biochem., 58, 1809-1813 (1994) abstract

18. Hiroyuki Iwamoto, Masahiro Ohno, Masayuki Ohmori, Junzo Hirose, Akiyoshi Tanaka, Shuzo Sakai, and Keitaro Hiromi, Comparison of the Binding of β-Cyclodextrin and α- and γ-Cyclodextrins with Pullulanase from Klebsiella pneumoniae as Studied by Equilibrium and Kinetic Fluorometry, J. Biochem., 116, 1264-1268 (1994) PubMed

19. Masayuki Fukumura, Akiyoshi Tanaka, Kazuo Sakka, and Kunio Ohmiya, Process of Thermal Denaturation of Xylanase (XynB) from Clostridium stercorarium F-9, Biosci. Biotechnol. Biochem., 59, 47-50 (1995) PubMed

20. Akiyoshi Tanaka, Harumi Fukada, and Katsutada Takahashi, Differential Scanning Calorimetric Studies on the Domain Structure of Aspergillus Glucoamylase, J. Biochem., 117, 1024-1028 (1995) PubMed

21. Akiyoshi Tanaka and Shuichi Takeda, Random Attack as Hydrolytic Reaction Mode of Oligosaccharides by Rhizopus Glucoamylase, Biosci. Biotechnol. Biochem., 59, 1372-1373 (1995) abstract

22. Akiyoshi Tanaka, Steady-State Kinetic and Calorimetric Studies on the Binding of Aspergillus niger Glucoamylase with Gluconolactone, 1-Deoxynojirimycin, and β-Cyclodextrin, Biosci. Biotechnol. Biochem., 60, 2055-2058 (1996) PubMed

23. Kazuo Sakka, Masayuki Fukumura, Akiyoshi Tanaka, and Kunio Ohmiya, Characterization of Thermostability of Clostridium stercorarium Xylanase, Ann. N.Y. Acad. Sci., 799, 341-345 (1996) PubMed(タイトルのみ)

24. Akiyoshi Tanaka, Differential Scanning Calorimetric Studies on the Thermal Unfolding of Pseudomonas cepacia Lipase in the Absence and Presence of Alcohols, J. Biochem., 123, 289-293 (1998) PubMed

25. Akiyoshi Tanaka, Shuichi Karita, Yoshie Kosuge, Keishi Senoo, Hitoshi Obata, and Noriyuki Kitamoto, Thermal Unfolding of the Starch Binding Domain of Aspergillus niger Glucoamylase, Biosci. Biotechnol. Biochem., 62, 2127-2132 (1998) PubMed

26. Akiyoshi Tanaka, Daisuke Kobayashi, Keishi Senoo, and Hitoshi Obata, Possibility for Discriminating between Two Representative Non Two-State Thermal Unfolding Models of Proteins by DSC, Biosci. Biotechnol. Biochem., 63, 438-442 (1999) PubMed

27. 土坂享成, 今井邦雄, 妹尾啓史, 田中晶善, 小畑仁, 水稲根に含まれるCd 結合能力を有するカディスチン[(γ-EC)nG]合成酵素の性質, 環境科学会誌, 12, 211-216 (1999) abstract

28. Akiyoshi Tanaka, Mayumi Ohya, Takehito Yamamoto, Chika Nakagawa, Takashi Tsuji, Keishi Senoo, and Hitoshi Obata, Steady-State Inhibitory Kinetic Studies on the Ligand Binding Modes of Aspergillus niger Glucoamylase, Biosci. Biotechnol. Biochem., 63, 1548-1552 (1999) PubMed

29. Akiyoshi Tanaka, Kozue Okuda, Keishi Senoo, Hitoshi Obata, and Kuniyo Inouye, Guanidine Hydrochloride-Induced Denaturation of Pseudomonas cepacia Lipase, J. Biochem., 126, 382-386 (1999) PubMed

30. 田中晶善, 小川ひとみ, 妹尾啓史, 小畑仁, pHジャンプ法を用いた, ヌクレアーゼ再生反応に関する速度パラメータと遷移相の熱力学諸量の評価, 熱測定, 26, 130-135 (1999) abstract

31. 田中晶善, 苅田修一, 小菅芳栄, 妹尾啓史, 小畑仁, グルコアミラーゼ澱粉結合ドメインフラグメントのアミノ酸置換タンパク質C509Gと C509Sの熱変性, 熱測定, 26, 136-140 (1999) abstract

32. Akiyoshi Tanaka, Chika Nakagawa, Kazuko Kodaira, Keishi Senoo, and Hitoshi Obata, Basic Subsite Theory Assumptions May Not Be Applicable to the Hydrolysis of Cellooligosaccharides by Almond β-Glucosidase, J. Biosci. Bioeng., 88, 664-666 (1999) PubMed

33. Atsunari Tsuchisaka, Tetsuya Kimura, Kunio Imai, Keishi Senoo, Akiyoshi Tanaka, and Hitoshi Obata, Cadystins [(γ-EC)nG] Synthesis Ability of Carboxypeptidase (CPase), Environ. Sci., 12, 393-398 (1999)

34. Hitoshi Obata, Satoko Kawamura, Keishi Senoo, and Akiyoshi Tanaka, Changes in the Level of Protein and Activity of Cu/Zn-Super Oxide Dismutase in Zinc Deficient Rice Plant, Oryza sativa L., Soil Sci. Plant Nutr., 45, 891-896 (1999)

35. Minoru Inagaki, Kenjiro Maeyama, Hiroko Handa, Akiyoshi Tanaka, Shuichi Karita, Shiro Nishikawa, and Naoki Kashimura, Evaluation of Specific Binding of H Protein of Bacteriophage φX174 Fused with Maltose-Binding Protein toward Receptor Lipopolysaccharides, J. Biochem. Mol. Biol. Biophys., 4, 59-64 (2000)

36. Minoru Inagaki, Akiyoshi Tanaka, Ryoko Suzuki, Hirohito Wakashima, Tomoko Kawaura, Shuichi Karita, Shiro Nishikawa, and Naoki Kashimura, Characterization of the Binding of Spike H Protein of Bacteriophage φX174 with receptor lipopolysaccharides. J. Biochem., 127, 577-583 (2000) PubMed

37. Choocchad Santasup, Keishi Senoo, Ampan Bhromsiri, Arawan Shutsrirung, Akiyoshi Tanaka, and Hitoshi Obata, Simple Method of Genomic DNA Extraction from Rhizobia in Dried Nodules of Phaseolus vulgaris for Strain Differentiation by PCR-Based DNA Fingerprinting, Soil Sci. Plant Nutr., 46, 541-548 (2000)

38. Keishi Senoo, M. Zakaria Solaiman, Masayoshi Kawaguchi, Haruko Imaizumi-Anraku, Shoichiro Akao, Akiyoshi Tanaka, and Hitoshi Obata, Isolation of Two Different Phenotypes of Mycorrhizal Mutants in the Model Legume Plant Lotus japonicus after EMS-Treatment, Plant Cell Physiol. 41, 726-732 (2000) PubMed

39. M. Zakaria Solaiman, Keishi Senoo, Masayoshi Kawaguchi, Haruko Imaizumi-Anraku, Shoichiro Akao, Akiyoshi Tanaka and Hitoshi Obata, Characterization of Mycorrhizas Formed by Glomus sp. on Roots of Hypernodula Ting Mutants of Lotus japonicus. Journal of Plant Research 113, 443-448 (2000)

40. Atsunari Tsuchisaka, Tetsuya Kimura, Kunio Imai, Keishi Senoo, Akiyoshi Tanaka, and Hitoshi Obata, Inprovement of Cadystins [(γ-EC)nG] Synthesis Activity and Cd Tolerance in Tobacco Cells by Transfer of the Rice Type I Carboxypeptidase gene (Cpase Gene). Environmental Science. 13, 519-528 (2000).

41. Hitoshi Obata, Satoko Kawamura, A Shimoyama, Keishi Senoo, and Akiyoshi Tanaka, Free Radical Injury in Rice Leaf under Zn Deficiency. Soil Sci. Plant Nutr. 47, 205-211 (2001)

42. Choochad Santasup, Keishi Senoo, Ampan Bhromsiri, Arawan Shutsrirung, Akiyoshi Tanaka and Hitoshi Obata, Improved survival of nutrient-starved cells of Rhizobium tropici CIAT899 in acid soil with high Al3+ and Mn2+ content. Soil Sci. Plant Nutr., 47, 559-567 (2001)

43. Keishi Senoo, Maki Kaneko, Rikako Taguchi, Jun Murata, Choochad Santasup, Akiyoshi Tanaka, and Hitoshi Obata, Enhanced Growth and Nodule Occupancy of Red Kidney Bean and Soybean Inoculated with Soil Aggregate-Based Inoculant, Soil Sci. Plant Nutr., 48, 251-259 (2002)

44. Akiyoshi Tanaka, Hayuki Sugimoto, Yuko Muta, Takafumi Mizuno, Keishi Senoo, Hitoshi Obata, and Kuniyo Inouye, Differential Scanning Calorimetric Studies on the Effects of Ca2+ on the Thermal Unfolding of Pseudomonas cepacia Lipase, Biosci. Biotechnol. Biochem., 67, 207-210 (2003) PubMed

45. Kazuo Sakka, Mari Nakanishi, Mari Sogabe, Takamitsu Arai, Hiroshi Ohara, Akiyoshi Tanaka, Tetsuya Kimura, and Kunio Ohmiya, Isothermal Titration Calorimetric Studies on the Binding of a Family 6 Carbohydrate-binding Module of Clostridium thermocellum XynA with Xylooligosaccarides, Biosci. Biotechnol. Biochem., 67, 406-409 (2003) PubMed

46. Takamitsu Arai, Rie Araki, Akiyoshi Tanaka, Shuichi Karita, Tetsuya Kimura, Kazuo Sakka, and Kunio Ohmiya "Characterization of a Cellulase Containing a Family 30 Carbohydrate-Binding Module (CBM) Derived from Clostridiumu thermocellum CelJ: Importance of the CBM to Cellulose Hydrolysis", J. Bacteriol., 185, 504-512 (2003) PubMed

47. Tomoko Kawaura, Minoru Inagaki, Akiyoshi Tanaka, Muneharu Kato, Shiro Nishikawa, Naoki Kashimura, Contributions of Polysaccharide and Lipid Regions of Lipopolysaccharide to the Recognition by Spike G Protein of Bacteriophage φX174, Biosci, Biotechnol. Biochem., 67 (4), 869-876 (2003) PubMed

48. Takafumi Mizuno, Sonoda, T., Horie, K., Keishi Senoo, Akiyoshi Tanaka, Mizuno, N., and Hitoshi Obata "Cloning and characterization of phytochelatin synthase from a nickel hyperaccumulator Thlaspi japonicum and its expression in yeast" Soil Sci. Plant Nutr. 49, 285-290 (2003)

49. Pathipan Sutigoolabud, Keishi Senoo, Somchai Ongprasert, Takafumi, Mizuno, Akiyoshi Tanaka, Hitoshi Obata and Makoto Hisamatsu "Decontamination of Chlorate in Longan Plantation Soils by Bio-stimulation with Sugar Amendment" Soil Sci. Plant Nutr. 50, 249-256 (2004)

50. Akiyoshi Tanaka "Fluorometric Study of the Acid-Induced Denaturation of Staphylococcal Nuclease and Its Mutant Forms" Biosci. Biotechnol. Biochem., 68 (6), 1293-1298 (2004) PubMed

51. 田中晶善,坂宮智樹,粟冠真紀子,三宅英雄,深田はるみ,妹尾啓史,粟冠和郎,高橋克忠,熱測定法による食塩の防腐効果の定量的解析,日本海水学会誌,60 (2), 132-136 (2006) 4月

52. Seungjae Lee, Hiroshi Oneda, Masashi Minoda, Akiyoshi Tanaka, Kuniyo Inouye "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" J. Biochem. (Tokyo) 139, 997-1005 (2006) June PubMed

53. Rie Araki, Shuichi Karita, Akiyoshi Tanaka, Tetsuya Kimura, and Kazuo Sakka "Effect of Family 22 Carbohydrate-Binding Module on the Thermosability of Xyn10B Catalytic Module from Clostridium stercorarium." Biosci. Biotechnol. Biochem., 70(12), 3039-3041 (2006) PubMed

54. Rie Araki, Shuichi Karita, Akiyoshi Tanaka, Miki Suzuki, Tetsuya Kimura, and Kazuo Sakka "Thermal Unfolding and Modular Architecture of Clostridium stercorarium Xyn10B" Biosci. Biotechnol. Biochem., 71(5), 1322-1326 (2007) PubMed

55. Hayuki Sugimoto, Miho Nakaura, Yoshie Kosuge, Kunio Imai, Hideo Miyake, Shuichi Karita, and Akiyoshi Tanaka "Thermodynamic Effects of Disulfide Bond on Thermal Unfolding of the Starch-binding Domain of Aspergillus niger Glucoamylase" Biosci. Biotechnol. Biochem., 71(6), 1535-1541 (2007) PubMed

56. Keishi Senoo, M. Zakaria Solaiman, Satoki Tanaka, Masayoshi Kawaguchi, Haruko Imaizumi-Anraku, Shoichiro Akao, Akiyoshi Tanaka, and Hitoshi Obata "Isolation and characterization of arbuscules from roots of an increased arbuscule forming mutant of Lotus japonicus." Annals of Botany, 100, 1599-1603 (October 2007) PubMed

57. Tsukimi Iida, Shigenori Nishimura, Maki Mochizuki, Susumu Uchiyama, Tadayasu Ohkubo, Yoshihiro Urade, Akiyoshi Tanaka, and Takashi Inui, “Thermal unfolding mechanism of lipocalin-type prostaglandin D synthase.” FEBS J., 275(2), 233-241 (January 2008) PubMed

58. Hayuki Sugimoto, Yoshiaki Nishiya, Hideo Miyake, and Akiyoshi Tanaka “Stabilization Mechanism of Chloride Ion on Thermal Denaturation of Arthrobacter Sarcosine Oxidase.” Netsu Sokutei (Calorimetry and Thermal Analysis) 35(2)76-80 (March 2008) abstract pdf

59. Ryuichiro Suzuki, Jun Wada, Takane Katayama, Shinya Fushinobu, Takayoshi Wakagi, Hirofumi Shoun, Hayuki Sugimoto, Akiyoshi Tanaka, Hidehiko Kumagai, Hisashi Ashida, Motomitsu Kitaoka, and Kenji Yamamoto "Structural and thermodynamic analyses of solute-binding protein from bifidobacterium longum specific for core 1 disaccharide and lacto-N-biose I" J. Bio. Chem. 283 (19), 13165-13173 (May 9, 2008) PubMed

60. 坂宮章世,近藤沙紀,三宅英雄,妹尾啓史,田中晶善, 熱測定法による,土壌微生物活性への土壌ストレス物質の影響の解析−塩化ナトリウムによるグルコース資化抑制効果−, 熱測定, 35(3), 134-140 (2008) abstract  pdf

61. Takafumi Mizuno, Ryou Asahina, Atsuko Hosono, Akiyoshi Tanaka, Keishi Senoo, and Hitoshi Obata "Age-Dependent Manganese Hyperaccumulation in Chengiopanax sciadophylloides (Araliaceae)" J. Plant Nutrition, 31, 1811-1819 (Oct 2008)

62. Yuko ARAKI, Shuichi KARITA, Akiyoshi TANAKA, Makoto KONDO and Masakazu GOTO " Characterization of Family 17 and Family 28 Carbohydrate-Binding Modules from Clostridium josui Cel5A" Biosci. Biotechnol. Biochem., 73(5), 1028-1032 (May, 2009) PubMed

63. Hayuki Sugimoto, Miho Nakaura, Shigenori Nishimura, Shuichi Karita, Hideo Miyake, and Akiyoshi Tanaka "Kinetically trapped metastable intermediate of a disulfide deficient mutant of the starch-binding domain of glucoamylase" Protein Science, 18(8), 1715-1723, (Aug. 2009) PubMed

64. 坂宮章世,田中晶善,微生物熱測定データ解析モデルの妥当性の検討,熱測定, 37(2), 58-63 (2010年3月)  pdf

65. Akiyo K. Sakamiya, Natsuki Origuchi, and Akiyoshi Tanaka "Calorimetric Analysis of Effects of a Soil-Stress Compound on Soil-Microbial Activity" Netsu Sokutei (Calorimetry and Thermal Analysis), 37(5), 186-190 (2010年) pdf

66. Yuya Miyamoto, Yasuo Noda, Tsukimi Iida, Keisuke Yamaguchi, Shigenori Nishimura, Akiyoshi Tanaka, Shin-ichi Segawa, and Takashi Inui "NMR and CD analysis of an intermediate state in the thermal unfolding process of mouse lipocalintype prostaglandin D synthase" Journal of Biochemistry (Tokyo), 151 (3), 335-342 (March, 2012) PubMed

67. Hideo Miyake, Yukiko Maeda, Takashi Ishikawa, and Akiyoshi Tanaka "Calorimetric studies of the growth of anaerobic microbes" Journal of Bioscience and Biotechnology, 122(3), 364-369, March 2016 PubMed

68. Chiaki Ota, Masamichi Ikeguchi, Akiyoshi Tanaka, Daizo Hamada, "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 (BBA) - Proteins and Proteomics, 1864(10), 1464-1472, May 2016 PubMed

69. Yoshifumi Masuda, Hideo Miyake, Akiyoshi Tanaka, Hayuki Sugimoto, "Calorimetric Study on the Binding of β-Cyclodextrin to the Starch-binding Domain of Aspergillus niger Glucoamylase", Netsu Sokutei (Calorimetry and Thermal Analysis), 44(4), 135-138, 2017 abstract


総説・解説

1. 田中晶善, 北村進一, タンパク質の熱変性とアミノ酸置換−リゾチームとヌクレアーゼを例に, 生物物理, 32, 110-115 (1992)

2. 田中晶善, 熱測定で見るタンパク質の高次構造, 化学と生物, 31, 439-446 (1993)

3. 田中晶善, タンパク質工学と熱測定, 熱測定, 22, 106-109 (1995)

4. Akiyoshi Tanaka, Calorimetric and Kinetic Studies on the Domain Structure and Ligand Binding Mode of Aspergillus niger Glucoamylase, Recent Res. Devel. in Agricultural & Biological Chem., 1, 113-123 (1997)

5. 田中晶善, Aspergillus niger グルコアミラーゼのドメイン構造とリガンド結合, 応用糖質科学, 45, 199-205 (1998)

6. 田中晶善, グルコアミラーゼの構造と機能−熱測定の立場から−, 日本農芸化学会誌, 75, 566-568 (2001)

7. 田中晶善, 熱測定によるタンパク質熱変性機構の解析, 科学と工業, 75, 12-17 (2002)

8. 坂宮章世, 田中晶善, 熱測定法による食品腐敗過程と防腐効果の解析 FFIジャーナル, 214(1), 28-34, 2009

9. 坂宮章世, 田中晶善, 微生物熱測定と, その食品微生物学および土壌微生物学への応用, 熱測定, 36(1) , 31-37, 2009

10.田中晶善, 微生物熱測定法による食品防腐効果の解析法, 食品機械装置, 50(4), 52-56 (2013) ISSN 0912-4926

11.田中晶善, デンプン結合ドメインの変性とジスルフィド結合の効果, 熱測定, 46(2), 81-86, 2019 pdf


著書

1. 廣海啓太郎, 中谷博, 田中晶善, 峰野純一, ミクロストップトフロー法, 『ライフサイエンスの現状と将来II-2 バイオリアクター研究』(理化学研究所編)pp.193-203 (1985)

2. 田中晶善, 自然の構造と生命, 『宇宙・地球・生命・ヒト−自然と人間』(阿閉義一編)三重学術出版 pp.11-34 (1994), 改訂3版(2000)

3. 田中晶善, 『教養 化学実験』, 三重学術出版(2001)

4. 田中晶善,生化学的に重要な熱力学量,『改訂5版 化学便覧基礎編』第二分冊pp. 320-323 (10章14節)丸善出版 (2004) 同 CD-ROM 増補版(2004)

5. 田中晶善,熱測定による酵素の構造と機能の分析,『食品酵素化学の最新技術と応用』pp. 216-223(6章1節)シーエムシー出版 (2004)

6. 田中晶善,『これならわかる化学実験』 三共出版 (2006)

7. 田中晶善, 『これならわかる化学実験 第二版』 三共出版 (2008)

8. 奥村克純, 田中晶善, 『ベーシックマスター生化学』pp. 121-145, 375-377(第6章「酵素」)オーム社 (2008)

9. 田中晶善,『熱量測定, 熱分析ハンドブック(第二版)』p.297 (5.4.4.ジスルフィド結合とタンパク質の安定性)2009年1月

10. 田中晶善,生化学的に重要な熱力学量,『改訂6版 化学便覧基礎編』(10章14節)丸善出版 (2021),同 Web 増補版(『化学書資料館2020』中の『化学便覧基礎編』),丸善出版 (2020)



学位論文

Static and Kinetic Studies on the Binding Mechanism of Rhizopus Glucoamylase with Its Substrates and Analogs (京都大学, 1982)



紀要・プロシーディング 等

1. 田中晶善 「タンパク質のアミノ酸置換と熱安定性」『熱分析の基礎と応用』第二版 (日本熱測定学会編)p.181 (1989)

2. 田中晶善 「『モル』をどう教えるか−小専理科講義法の工夫(I)−」 三重大学教育研究指導センター紀要 11, 55-63 (1991)

3. 田中晶善 「『アミラーゼはマルトースを生成する』か」 化学と教育 39, 84-85 (1991) 

4. 田中晶善 「科学を相対化する視点」 化学と教育 39, 86-87 (1991)

5. 田中晶善, 新居淳二 「理科教員は何を求めているか−東海地区理科教員へのアンケート調査から−」 三重大学教育研究指導センター紀要 13, 35-45 (1993)

6. 田中晶善, 田村厚夫 「エール大学 Sturtevant 研究室 −熱測定のメッカ− 」 生物物理 33, 187-189 (1993)

7. 田中晶善 「『一般化学』の講義方法について」 大学教育研究(三重大学授業研究交流誌) 1, 59-63 (1993)

8. 田中晶善 「タンパク質のアミノ酸置換と熱安定性」『熱分析の基礎と応用』第三版 (日本熱測定学会編) p.185 (1994)

9. 田中晶善 「エール大学の『一般化学』とその周辺」 大学教育研究(三重大学授業研究交流誌) 2, 73-78 (1994)

10. 田中晶善, 竹田秀一 「グルコース定量法の微量化と, イソマルトオリゴ糖水解反応の測定」 三重大学教育学部研究紀要(自然科学) 46, 21-23 (1995)

11. 田中晶善, 松永守, 古関春隆 「理系基礎教育科目アンケート調査の結果と解析」 大学教育研究(三重大学授業研究交流誌) 4, 93-101 (1996)

12. 田中晶善 「共通教育 化学実験テキスト」 (1997, 改訂1998)

13. 田中晶善 「主題D, 講義, セミナー開講記録」大学教育研究(三重大学授業研究交流誌) 6, 1-11 (1998)

14 田中晶善 「共通教育 基礎化学II テキスト」(1999)

15. 田中晶善 「農芸化学 物理化学 テキスト」(1999)

16. 田中晶善, 藤森豊 「化学実験ウェブテキストの開発」大学教育研究(三重大学授業研究交流誌) 9, 77-80 (2001)

17. Choochad Santasup, Ampan Bhromsiri, Arawan Shutsrirung, Akiyoshi Tanaka, Hitoshi Obata and Keishi Senoo, Effect of Different Legume Inoculants on Nodulation and N2 Fixation of Red Kidney Bean in Northern Highland Soil of Thailand. Biotechnology for Sustainable Utilization of Biological Resources in the Tropics, 16, 179-186 (2003)

18. 飯田津喜美, 田中晶善, 山添和香, 乾隆 「リポカイン型プロスタグランジンD合成酵素の熱変性機構における疎水性低分子結合の効果」 三重短期大学紀要 54, 1-4 (2006)