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Yam Tuber Storage Protein Reduces Plant Oxidants Using the Coupled Reactions as Carbonic Anhydrase and Dehydroascorbate Reductase

Yam Tuber Storage Protein Reduces Plant Oxidants Using the Coupled Reactions as Carbonic Anhydrase and Dehydroascorbate Reductase
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摘要 Dioscodn is the major storage protein of yam tuber and accounts for approximately 80%-85% of the total soluble proteins. The protein also exhibits the activities of carbonic anhy- drases (CAs) (Hou et al., 1999b, 2000) Dioscodn is the major storage protein of yam tuber and accounts for approximately 80%-85% of the total soluble proteins. The protein also exhibits the activities of carbonic anhy- drases (CAs) (Hou et al., 1999b, 2000)
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出处 《Molecular Plant》 SCIE CAS CSCD 2015年第7期1115-1118,共4页 分子植物(英文版)
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参考文献10

  • 1Hewett-Emmett, D., and Tashian, R.E. (1996). Functional diversity, conservation, and convergence in the evolution of the ~-, ~-, and -~-carbonic anhydrase gene families. Mol. Phylogenet. Evol. 5:50-77.
  • 2Hou, W.C., Chen, H.J., and Lin, H.Y. (1999a). Dioscorin, the major tuber storage protein of yam (Dioscorea batatas Decne) with dehydroascorbate reductase and monodehydroascorbate reductase activities. Plant Sci. 149:151-156.
  • 3Hou, W.C., Liu, J.S., Chert, H.J., Chen, T.E., Chang, C.F., and Lin, ~.H. (1999b). Dioscodns, the major tuber storage proteins of yam (Dioscorea batatas Decne) with carbonic anhydrase and trypsin inhibitor activities. J. Agric. Food Chem. 47:2168-2172.
  • 4Hou, W.C., Chen, H.J., and Lin, Y.H. (2000). Dioscorins from different Dioscorea species all exhibit both carbonic anhydrase and trypsin inhibitor activities, Bot. Bull. Acad. Sin. 41:191-196.
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  • 8Trumper, S., Follmann, H., and Haberlein, I. (1994). A novel- dehydroascorbate reductase from spinach chloroplasts homologous to plant trypsin inhibitor. FEBS Lett. 352:159-162.
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  • 10Zhao, L., Liao, H., and Tsai, M.D. (2004). The catalytic role of aspartate in a short strong hydrogen bond of the Asp274-His32 catalytic dyad in phosphatidylinositol-specific phospholipase C can be substituted by a chloride ion. J. Biol. Chem. 279:31995-32000.

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