首页> 外文期刊>Toxicon: An International Journal Devoted to the Exchange of Knowledge on the Poisons Derived from Animals, Plants and Microorganisms >HEMOLYTIC ACTIVITIES OF TRITERPENE GLYCOSIDES FROM THE HOLOTHURIAN ORDER DENDROCHIROTIDA - SOME TRENDS IN THE EVOLUTION OF THIS GROUP OF TOXINS
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HEMOLYTIC ACTIVITIES OF TRITERPENE GLYCOSIDES FROM THE HOLOTHURIAN ORDER DENDROCHIROTIDA - SOME TRENDS IN THE EVOLUTION OF THIS GROUP OF TOXINS

机译:呼得尔级虎齿RO的三萜糖苷的溶血活性-在这组毒素演变中的一些趋势。

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Hemolysis and K+ loss from mouse erythrocytes, induced by triterpene glycosides and their derivatives from this order of sea cucumbers were studied. Sulfate groups, attached to position 4 of the first xylose residue and to position 6 of the third glucose residue of the branched pentaosides, having 3-O-methyl-groups in terminal monosaccharide moieties increase K+ loss. A sulfate group at C-4 of the first xylose residue increases the hemolytic activity while a sulfate at C-6 of the third monosaccharide unit decreases it. A sulfate group at C-6 of terminal 3-O-methylglucose drastically decreases the hemolytic activity and rate of K+ loss. The presence of a sulfate group at the first xylose residue in glycosides having no 3-O-methyl group at the terminal monosaccharide decreases hemolytic activity and rate of K+ loss. The presence of the 16-ketone group in aglycones having the 7(8)-double bond significantly decreases activity. These results correlate with the previously proposed trends in evolution of sea cucumber glycosides from substances having sulfate groups at C-6 of glucose and 3-O-methylglucose units to substances sulfated at C-4 of the first xylose or having no sulfate groups, and from substances with aglycone 16-ketone to substances having no oxygen functions in this position. (C) 1996 Elsevier Science Ltd. [References: 14]
机译:研究了三萜糖苷及其衍生物从该海参中诱导的小鼠红细胞溶血和K +丢失。硫酸盐基团连接到分支木糖苷的第一个木糖残基的位置4和第三葡萄糖残基的位置6,在末端单糖部分具有3-O-甲基,从而增加K +损失。第一个木糖残基的C-4处的硫酸根增加了溶血活性,而第三个单糖单元的C-6处的硫酸根降低了溶血活性。在3-O-甲基葡萄糖末端的C-6处的硫酸根基团极大地降低了溶血活性和K +丢失率。在末端单糖上不具有3-O-甲基的糖苷的第一木糖残基上存在硫酸根降低了溶血活性和K +损失速率。具有7(8)-双键的糖苷配基中16-酮基的存在显着降低了活性。这些结果与先前提出的海参糖苷从在葡萄糖的C-6具有硫酸基和3-O-甲基葡萄糖单元的物质向在第一木糖的C-4具有硫酸化的物质或不具有硫酸基的物质进化的趋势相关,并且从带有糖苷配基16酮的物质到在该位置没有氧功能的物质。 (C)1996 Elsevier Science Ltd. [参考:14]

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