扇贝抗肿瘤糖原及其结构与抗肿瘤活性的关系。

Journal of marine biotechnology Pub Date : 1998-12-01
Takaya, Uchisawa, Ichinohe, Sasaki, Ishida, Matsue
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引用次数: 0

摘要

采用酶E处理扇贝热水提取物,采用Sephadex G-25凝胶过滤和DEAE Sephadex A-25离子交换层析进行分离。检测了这些组分对甲氧基a型纤维肉瘤的抗肿瘤活性。在DEAE Sephadex A-25阴离子交换凝胶上获得的非吸附部分(SCA25A)和弱吸附部分(SCA25B)具有较强的抗肿瘤活性。化学分析和核磁共振鉴定出SCA25A和SCA25B为糖原。而用三氯乙酸从扇贝和鲍鱼中提取的糖原没有抗肿瘤活性。这种差异被认为是由于糖原分子精细结构的变化。采用-淀粉酶和普鲁兰酶序贯酶切法研究糖原的精细结构,采用高效阴离子交换色谱法分析糖原的单元链。结果表明,与无抗肿瘤活性的糖原相比,具有抗肿瘤活性的糖原具有较短的支链。
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Antitumor glycogen from scallops and the interrelationship of structure and antitumor activity.

Hot water extract of scallop was treated with actinase E and fractionated by Sephadex G-25 gel-filtration and DEAE Sephadex A-25 ion-exchange chromatography. The antitumor activity of these fractions against Meth-A fibrosarcoma was examined. The nonadsorbed fraction (SCA25A) and weakly adsorbed fraction (SCA25B) obtained on DEAE Sephadex A-25 anion-exchange gel showed strong antitumor activity. Chemical analyses and NMR spectra identified SCA25A and SCA25B as glycogen. However, glycogen extracted from the scallop with trichloroacetic acid and from abalone showed no antitumor activity. This difference was thought to be due to variations in the fine structure of the glycogen molecule. The fine structure of glycogen was investigated by a sequential enzyme digestion method using beta-amylase and pullulanase, while the unit chain was analyzed by high performance anion exchange chromatography. The results showed that the antitumor active glycogen was highly branched with a shorter chain than glycogens without antitumor activity.

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