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首页> 外文期刊>日本食品科学工学会誌 >Structure characterization of polypeptides of viscous glycoprotein from yam (Dioscorea opposita THUNB.) mucilage [Japanese]
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Structure characterization of polypeptides of viscous glycoprotein from yam (Dioscorea opposita THUNB.) mucilage [Japanese]

机译:山药粘稠糖蛋白多肽的结构表征(Dioscorea Opposita Thunb。)粘液[日语]

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摘要

In this study, partial structure of polypeptide chains of glycoprotein responsible for viscosity from three kinds of yams (Tsukuneimo, Ichoimo and Nagaimo) was characterized. The N-terminal amino acid sequences of 32- and 28-kDa glycoproteins obtained from SDS-PAGE in the absence of 2-mercaptoethanol (2-ME) were determined as V-E-D-E-F-S-Y-I-E-G-N-P-N-G-P-E-N-W-G-N. The N-terminal amino acid sequences of 56-kDa glycoproteins from Tsukuneimo and Ichoimo were identical, D-G-D-F-S-Y-I-E-G-S-P-N-G-P-E-N-W-G-N-L, whereas the N-terminal sequence (D-E-D-D-F-S-Y-I-E-G-S-P-N-G-P-E-N-W-G-N) for that from Nagaimo was different from it. On the database search via World Wide Web network, a consensus sequence, obtained from these sequences, was similar with that of dioscorin, one of the storage proteins of vam. On the SDS-PAGE in the presence of 2-ME, the glycoproteins demonstrated one peptide band with molecular mass of 32 kDa. Based on N-terminal amino acid sequence analysis. the 32-kDa peptide was identified as mixture of two kinds of polypeptides. designated as 32 kDa (A) for the dominant peptide and 32 kDa (B) for the minor peptide. Consequently three proteins obtained by non-reduced SDS-PAGE were concluded as follows; the 56-kDa glycoprotein consisted of two 32 kDa (B) joined by disulfide bond, the 32-kDa glycoprotein was monomer of 32 kDa (A) without any disulfide bonds, and the 28-kDa glycoprotein was monomer of 32 kDa (A) whose apparent molecular mass was decreased due to internal disulfide bond. The peptide mapping analysis using limited proteolysis and amino acid composition analysis for 32 kDa (A) peptide suggested that the glycoproteins of three yams had slightly different primary structure,.
机译:在该研究中,表征了来自三种山药粘度(Tsukuneimo,Ihoimo和Nagaimo)的糖蛋白的多肽链的部分结构。在没有2-巯基乙醇(2-ME)的情况下,从SDS-PAGE获得的32-和28-KDA糖蛋白的N-末端氨基酸序列由V-E-D-E-F-S-Y-I-E-E-E-E-G-N-P-N-G-P-E-N-W-G-N测定。从Tsukuneimo和Ichoimo 56-kDa的糖蛋白的N-末端氨基酸序列是相同的,d-G-d-F-S-Y-I-E-G-S-P-N-G-P-E-N-W-G-N-L,而N-末端序列(d-E-d-d-F-S-Y-I-E-G-S-P-N-G-P-E-N-W-G-N)对于从Nagaimo是从它不同。在通过万维网网络的数据库搜索中,从这些序列获得的共有序列,与Dioscorin的共有序列,VAM的一个储存蛋白质。在2-Me存在下的SDS-PAGE上,糖蛋白显示出一个具有32kDa的一个分子量的肽带。基于N-末端氨基酸序列分析。将32-KDA肽鉴定为两种多肽的混合物。指定为32kDa(a)的主要肽和32kda(b)用于小肽。因此,通过非降低的SDS-PAGE获得的三种蛋白质得出结论如下;由二硫键连接的56-kda糖蛋白组成,32kda糖蛋白加入32kda(a)的单体,没有任何二硫键,28-kda糖蛋白是32kda(a)的单体。由于内部二硫键,其表观分子量的表观分子量降低。使用有限蛋白水解和氨基酸组成分析的肽映射分析32kDa(a)肽表明,三款糖蛋白的主要结构略有不同。

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