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au.\*:("HAYASHI, Kiyoshi")

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Results 1 to 13 of 13

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Debittering of protein hydrolyzatesSAHA, Badal C; HAYASHI, Kiyoshi.Biotechnology advances. 2001, Vol 19, Num 5, pp 355-370, issn 0734-9750Article

Construction of a chimeric aminopeptidase by a combination of gene shuffling and mutagenesisNIRASAWA, Satoru; HAYASHI, Kiyoshi.Biotechnology letters. 2008, Vol 30, Num 2, pp 363-368, issn 0141-5492, 6 p.Article

A putative proline iminopeptidase of Thermotoga maritima is a leucine aminopeptidese with lysine-p-nitroanilide hydrolyzing activityRATNAYAKE, Sunil; SELVARKUMAR, Ponniah; HAYASHI, Kiyoshi et al.Enzyme and microbial technology. 2003, Vol 32, Num 3-4, pp 414-421, issn 0141-0229, 8 p.Article

The role of conserved arginine residue in loop 4 of glycoside hydrolase family 10 xylanasesNISHIMOTO, Mamoru; KITAOKA, Motomitsu; FUSHINOBU, Shinya et al.Bioscience, biotechnology, and biochemistry. 2005, Vol 69, Num 5, pp 904-910, issn 0916-8451, 7 p.Article

Novel PCR-mediated mutagenesis employing DNA containing a natural abasic site as a template and translesional Taq DNA polymeraseKOBAYASHI, Atsushi; KITAOKA, Motomitsu; HAYASHI, Kiyoshi et al.Journal of biotechnology. 2005, Vol 116, Num 3, pp 227-232, issn 0168-1656, 6 p.Article

A cycloamylose-forming hyperthermostable 4-α-glucanotransferase of Aquifex aeolicus expressed in Escherichia coliSHAKHAWAT HOSSAIN BHUIYAN; KITAOKA, Motomitsu; HAYASHI, Kiyoshi et al.Journal of molecular catalysis. B, Enzymatic. 2003, Vol 22, Num 1-2, pp 45-53, issn 1381-1177, 9 p.Article

A thermostable non-xylanolytic α-glucuronidase of Thermotoga maritima MSB8SURESH, Cuddapah; KITAOKA, Motomitsu; HAYASHI, Kiyoshi et al.Bioscience, biotechnology, and biochemistry. 2003, Vol 67, Num 11, pp 2359-2364, issn 0916-8451, 6 p.Article

A kinetic study on pH-activity relationship of XynA from alkaliphilic Bacillus halodurans C-125 using aryl-xylobiosidesNISHIMOTO, Mamoru; HONDA, Yuji; KITAOKA, Motomitsu et al.Journal of bioscience and bioengineering. 2002, Vol 93, Num 4, pp 428-430, issn 1389-1723Article

Characterization of a hyperthermostable glycogen phosphorylase from Aquifex aeolicus expressed in Escherichia coliBHUIYAN, Shakhawat Hossain; RUS'D, Ahmed Abu; KITAOKA, Motomitsu et al.Journal of molecular catalysis. B, Enzymatic. 2003, Vol 22, Num 3-4, pp 173-180, issn 1381-1177, 8 p.Article

Characterization of a thermostable family 10 endo-xylanase (XynB) from thermotoga maritima that cleaves p-nitrophenyl-β-D-xylosideJIANG ZHENGQIANG; KOBAYASHI, Atsushi; MOHAMMAD MAINUL AHSAN et al.Journal of bioscience and bioengineering. 2001, Vol 92, Num 5, pp 423-428, issn 1389-1723Article

Fragment complementation for the co-refolding of Thermotoga maritima β-glucosidase by gene splitting at non-homologous regionKIM, Bong-Jo; MANGALA, Selanere L; MURALIDHARA, B. K et al.Enzyme and microbial technology. 2007, Vol 40, Num 4, pp 732-739, issn 0141-0229, 8 p.Article

Improving enzyme characteristics by gene shuffling; application to β-glucosidaseHAYASHI, Kiyoshi; LI YING; SINGH, Satya et al.Journal of molecular catalysis. B, Enzymatic. 2001, Vol 11, Num 4-6, pp 811-816, issn 1381-1177Conference Paper

Transglycosylation reaction of xylanase B from the hyperthermophilic Thermotoga maritima with the ability of synthesis of tertiary alkyl β-D-xylobiosides and xylosidesZHENGQIANG JIANG; YUNPING ZHU; LITE LI et al.Journal of biotechnology. 2004, Vol 114, Num 1-2, pp 125-134, issn 0168-1656, 10 p.Article

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