Protein engineering for improving the thermostability of tryptophan oxidase and insights from structural analysis (English)
- New search for: Yamaguchi, H.
- New search for: Tatsumi, M.
- New search for: Takahashi, K.
- New search for: Tagami, U.
- New search for: Sugiki, M.
- New search for: Kashiwagi, T.
- New search for: Kameya, M.
- New search for: Okazaki, S.
- New search for: Mizukoshi, T.
- New search for: Asano, Y.
- New search for: Yamaguchi, H.
- New search for: Tatsumi, M.
- New search for: Takahashi, K.
- New search for: Tagami, U.
- New search for: Sugiki, M.
- New search for: Kashiwagi, T.
- New search for: Kameya, M.
- New search for: Okazaki, S.
- New search for: Mizukoshi, T.
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In:
JOURNAL OF BIOCHEMISTRY -TOKYO THEN OXFORD-
;
164
, 5
;
359-367
;
2018
-
ISSN:
- Article (Journal) / Print
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Title:Protein engineering for improving the thermostability of tryptophan oxidase and insights from structural analysis
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Contributors:Yamaguchi, H. ( author ) / Tatsumi, M. ( author ) / Takahashi, K. ( author ) / Tagami, U. ( author ) / Sugiki, M. ( author ) / Kashiwagi, T. ( author ) / Kameya, M. ( author ) / Okazaki, S. ( author ) / Mizukoshi, T. ( author ) / Asano, Y. ( author )
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Published in:JOURNAL OF BIOCHEMISTRY -TOKYO THEN OXFORD- ; 164, 5 ; 359-367
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Publisher:
- New search for: JAPANESE BIOCHEMICAL SOC
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Publication date:2018-01-01
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Size:9 pages
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ISSN:
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Type of media:Article (Journal)
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Type of material:Print
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Language:English
- New search for: 572
- Further information on Dewey Decimal Classification
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Classification:
DDC: 572 -
Source:
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Table of contents – Volume 164, Issue 5
The tables of contents are generated automatically and are based on the data records of the individual contributions available in the index of the TIB portal. The display of the Tables of Contents may therefore be incomplete.
- 323
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Epigenetic regulation of intragenic transposable elements: a two-edged swordSaze, H. et al. | 2018
- 329
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Crystal structure of the central and the C-terminal RNase domains of colicin D implicated its translocation pathway through inner membrane of target cellChang, J. W. / Sato, Y. / Ogawa, T. / Arakawa, T. / Fukai, S. / Fushinobu, S. / Masaki, H. et al. | 2018
- 341
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A dual system using compartmentalized partnered replication for selection of arsenic-responsive transcriptional regulatorAye, S. L. / Fujiwara, K. / Doi, N. et al. | 2018
- 349
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Two Cdc48 cofactors Ubp3 and Ubx2 regulate mitochondrial morphology and protein turnoverChowdhury, A. / Ogura, T. / Esaki, M. et al. | 2018
- 359
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Protein engineering for improving the thermostability of tryptophan oxidase and insights from structural analysisYamaguchi, H. / Tatsumi, M. / Takahashi, K. / Tagami, U. / Sugiki, M. / Kashiwagi, T. / Kameya, M. / Okazaki, S. / Mizukoshi, T. / Asano, Y. et al. | 2018
- 369
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Chaperonin facilitates protein folding by avoiding initial polypeptide collapseMotojima, F. / Fujii, K. / Yoshida, M. et al. | 2018
- 381
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Chemical compounds that suppress hypoxia-induced stress granule formation enhance cancer drug sensitivity of human cervical cancer HeLa cellsTimalsina, S. / Arimoto-Matsuzaki, K. / Kitamura, M. / Xu, X. / Wenzhe, Q. / Ishigami-Yuasa, M. / Kagechika, H. / Hata, Y. et al. | 2018