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Enzymatic activation of oleuropein: A protein crosslinker used as a chemical defense in the privet tree

机译:橄榄苦苷的酶促活化:一种蛋白质交联剂用于女贞树中的化学防御作用

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摘要

Leaves of the privet tree, Ligustrum obtusifolium, contain a large amount of oleuropein, a phenolic secoiridoid glycoside, which is stably kept in a compartment separate from activating enzymes. When the leaf tissue is destroyed by herbivores, enzymes localized in organelles start to activate oleuropein into a very strong protein denaturant that has protein-crosslinking and lysine-decreasing activities. These activities are stronger than ever reported from plant systems and have adverse effects against herbivores by decreasing the nutritive value of dietary protein completely. We report here that strong oleuropein-specific β-glucosidase in organelles activates oleuropein by converting the secoiridoid glucoside moiety of oleuropein into a glutaraldehyde-like structure, which is also an α,β-unsaturated aldehyde. Oleuropein activated by β-glucosidase had very strong protein-denaturing, protein-crosslinking, and lysine-alkylating activities that are very similar to, but stronger than, those of glutaraldehyde. Aucubin, another iridoid glycoside, had similar activities after β-glucosidase treatment. We also detected polyphenol oxidase activity in organelles that activate the dihydroxyphenolic moiety to have protein-crosslinking activities. These data suggest that the privet tree has developed an effective defense mechanism with oleuropein, a unique multivalent alkylator ideal as a protein-crosslinker. Our results that iridoid glycosides are precursors of alkylators may elucidate the chemical bases that underlie various bioactivities and ecological roles of iridoid glycosides.
机译:女贞树女贞叶中含有大量的橄榄苦苷,一种酚类的类蛇药苷,可以稳定地保存在与活化酶分开的隔间中。当叶组织被食草动物破坏时,位于细胞器中的酶开始将橄榄苦苷激活为具有蛋白质交联和降低赖氨酸活性的非常强的蛋白质变性剂。这些活性比植物系统报告的要强,并且通过完全降低膳食蛋白的营养价值而对草食动物产生不利影响。我们在这里报告说,细胞器中的强橄榄苦苷特异的β-葡萄糖苷酶通过将橄榄苦苷的secrididoidoid糖苷部分转化为戊二醛样结构(也是一种α,β-不饱和醛)来激活橄榄苦苷。 β-葡萄糖苷酶激活的橄榄苦苷具有非常强的蛋白质变性,蛋白质交联和赖氨酸烷基化活性,与戊二醛非常相似,但比戊二醛更强。另一个鸢尾糖苷-蜂胶,在β-葡萄糖苷酶处理后具有相似的活性。我们还检测到细胞器中的多酚氧化酶活性,该细胞器激活二羟基酚部分具有蛋白质交联活性。这些数据表明,女贞树已经开发出了有效的防御机制,橄榄苦苷是一种独特的理想作为蛋白质交联剂的多价烷基化剂。我们的研究结果表明,鸢尾糖苷是烷基化剂的前体,可能阐明了鸢尾糖苷各种生物活性和生态作用基础的化学基础。

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