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Tropinone reductases, enzymes at the branch point of tropane alkaloid metabolism

机译:托品酮还原酶,在托烷生物碱代谢分支点处的酶

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Two stereospecific oxidoreductases constitute a branch point in tropane alkaloid metabolism. Products of tropane metabolism are the alkaloids hyoscyamine, scopolamine, cocaine, and polyhydroxylated nortropane alkaloids, the calystegines. Both tropinone reductases reduce the precursor tropinone to yield either tropine or pseudotropine. In Solanaceae, tropine is incorporated into hyoscyamine and scopolamine; pseudotropine is the first specific metabolite on the way to the calystegines. Isolation, cloning and heterologous expression of both tropinone reductases enabled kinetic characterisation, protein crystallisation, and structure elucidation. Stereospecificity of reduction is achieved by binding tropinone in the respective enzyme active centre in opposite orientation. Immunolocalisation of both enzyme proteins in cultured roots revealed a tissue-specific protein accumulation. Metabolite flux through both arms of the tropane alkaloid pathway appears to be regulated by the activity of both enzymes and by their access to the precursor tropinone. Both tropinone reductases are NADPH-dependent short-chain dehydrogenases with amino acid sequence similarity of more than 50% suggesting their descent from a common ancestor. Putative tropinone reductase sequences annotated in plant genomes other that Solanaceae await functional characterisation.
机译:两种立体特异性氧化还原酶构成了烷烃生物碱代谢的分支点。托烷代谢的产物是生物碱hyscyamine,东pol碱,可卡因和多羟基化的降冰片烷生物碱(calystegines)。两种肌钙蛋白还原酶均还原前体肌钙蛋白,从而生成托品碱或假托品碱。在茄科中,将tropine和东pol碱都掺入了tropine。假山pine碱是通往花萼的第一个特定代谢产物。肌钙蛋白还原酶的分离,克隆和异源表达能够进行动力学表征,蛋白质结晶和结构解析。还原的立体特异性是通过在相应的酶活性中心以相反的方向结合肌钙蛋白实现的。两种酶蛋白在培养根中的免疫定位显示了组织特异性蛋白的积累。通过托烷生物碱途径的两臂的代谢物通量似乎受两种酶的活性以及它们与前体肌钙蛋白的接触的调节。两种肌钙蛋白还原酶都是NADPH依赖的短链脱氢酶,氨基酸序列相似性超过50%,表明它们是从共同祖先那里遗传下来的。在植物基因组中注释的推定的肌钙蛋白还原酶序列是茄科尚待功能鉴定的。

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