Cheong J J, Birberg W, Fügedi P, Pilotti A, Garegg P J, Hong N, Ogawa T, Hahn M G
Complex Carbohydrate Research Center, University of Georgia, Athens 30602.
Plant Cell. 1991 Feb;3(2):127-36. doi: 10.1105/tpc.3.2.127.
The abilities of a family of chemically synthesized oligo-beta-glucosides, ranging in size from hexamer to decamer, to induce phytoalexin accumulation in soybean cotyledons were investigated to determine which structural elements of the oligoglucosides are important for their biological activity. The results of the biological assays established that the following structural motif is necessary for the oligo-beta-glucosides to have high elicitor activity: [formula; see text] The branched trisaccharide at the nonreducing end of the oligoglucosides was found to be essential for maximum elicitor activity. Substitution of either the nonreducing terminal backbone glucosyl residue or the side-chain glucosyl residue closest to the nonreducing end with glucosaminyl or N-acetylglucosaminyl residues reduced the elicitor activity of the oligoglucosides between 10-fold and 10,000-fold. Elicitor activity was also reduced 1000-fold if the two side-chain glucosyl residues were attached to adjacent backbone glucosyl residues rather than to glucosyl residues separated by an unbranched residue. In contrast, modifications of the reducing terminal glucosyl residue of an elicitor-active hepta-beta-glucoside by conjugation with tyramine and subsequent iodination had no significant effect on the elicitor activity of the hepta-beta-glucoside. These results demonstrate that oligo-beta-glucosides must have a specific structure to trigger the signal transduction pathway, which ultimately leads to the de novo synthesis of phytoalexins in soybean.
研究了一系列化学合成的寡聚β-葡糖苷(大小从六聚体到十聚体)诱导大豆子叶中植保素积累的能力,以确定寡聚葡糖苷的哪些结构元件对其生物活性至关重要。生物测定结果表明,寡聚β-葡糖苷具有高诱导活性必须具备以下结构基序:[化学式;见正文] 发现寡聚葡糖苷非还原端的分支三糖对于最大诱导活性至关重要。用葡糖胺基或N-乙酰葡糖胺基残基取代寡聚葡糖苷非还原末端主链葡糖基残基或最靠近非还原端的侧链葡糖基残基,会使寡聚葡糖苷的诱导活性降低10倍至10000倍。如果两个侧链葡糖基残基连接到相邻的主链葡糖基残基而不是由一个无分支残基隔开的葡糖基残基上,诱导活性也会降低1000倍。相比之下,通过与酪胺共轭并随后碘化对具有诱导活性的七聚β-葡糖苷的还原末端葡糖基残基进行修饰,对七聚β-葡糖苷的诱导活性没有显著影响。这些结果表明,寡聚β-葡糖苷必须具有特定结构才能触发信号转导途径,最终导致大豆中植保素的从头合成。