Isolation and Characterization of Pepsinogen from Trimeresurus flavoviridis (Habu Snake).
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- Yonezawa Hiroo
- Department of Chemistry, Faculty of Science, Kagoshima University
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- Nonaka Tsuyoshi
- Department of Chemistry, Faculty of Science, Kagoshima University
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- Uchikoba Tetsuya
- Department of Chemistry, Faculty of Science, Kagoshima University
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- Hattori Shousaku
- Amami Laboratory of Injurious Animals, Institute of Medical Science, University of Tokyo
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- Ohno Motonori
- Department of Applied Microbial Technology, Kumamoto Institute of Technology
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- Kaneda Makoto
- Department of Chemistry, Faculty of Science, Kagoshima University
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説明
Pepsinogen was isolated from the gastric mucosa of Trimeresurus flavoviridis (Habu snake) by DEAF-cellulose and DEAF-Sepharose ion-exchange chromatographies, and Sephacryl S-200 gel-chromatography. The yield calculated from the crude extract was 29% with 6.2-fold purification. The purified pepsinogen gave a single band on both native- and SDS-PAGE. As no other active enzyme was detected on the chromatographies, it was concluded that the Habu snake has one major pepsinogen. The molecular mass of the pepsinogen was estimated to be 38 kDa by SDS-PAGE. The sequence of the N-terminal 26 amino acid residues was determined and compared with those of other pepsinogens. The N-terminal structure of Habu snake pepsinogen was more homologous with those of mammalian pepsinogens C than those of mammalian pepsinogens A. The pepsinogen was rapidly converted to pepsin by way of an intermediate form induced by acidification. The optimum pH of Habu snake pepsin for bovine hemoglobin was 1.5-2.0, and it retained full activity at pH 6.2 and 30°C on incubation for 30min. The optimum temperature for the snake pepsin was 50°C and it was stable at 40°C on incubation for 10min. The proteolytic activity of the pepsin toward bovine hemoglobin was about two times higher than that of porcine pepsin A, however, the activity toward oxidized bovine insulin B-chain was lower than that of porcine pepsin A, and it did not hydrolyze oligopeptides. The specificity for oxidized bovine insulin B-chain of the pepsin was different from that of porcine pepsin A. Habu snake pepsin was inhibited by pepstatin A but not by serine, cysteine, or metallo protease inhibitors.
収録刊行物
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- The Journal of Biochemistry
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The Journal of Biochemistry 127 (5), 755-760, 2000
The Japanese Biochemical Society
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詳細情報 詳細情報について
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- CRID
- 1571980078056237440
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- NII論文ID
- 130003533863
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- ISSN
- 0021924X
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- 本文言語コード
- en
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- データソース種別
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