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从黑茄培养根部分离得到两种具有不同立体选择性的托品酮还原酶。

Two Tropinone Reductases with Distinct Stereospecificities from Cultured Roots of Hyoscyamus niger.

机构信息

Department of Agricultural Chemistry, Faculty of Agriculture, Kyoto University, Kyoto 606, Japan.

出版信息

Plant Physiol. 1992 Oct;100(2):836-45. doi: 10.1104/pp.100.2.836.

Abstract

Tropinone is an alkamine intermediate at the branch point of biosynthetic pathways leading to various tropane alkaloids. Two stereospecifically distinct NADPH-dependent oxidoreductases, TR-I and TR-II, which, respectively, reduce tropinone to 3alpha-hydroxytropane (tropine) and 3beta-hydroxytropane (psi-tropine), were detected mainly in the root of tropane alkaloid-producing plants but not in nonproducing cultured root. Both reductases were purified to near homogeneity from cultured root of Hyoscyamus niger and characterized. The TR-I reaction was reversible, whereas the TR-II reaction was essentially irreversible, reduction of the ketone being highly favored over oxidation of the alcohol psi-tropine. Marked differences were found between the two reductase in their affinities for tropinone substrate and in the effects of amino acid modification reagents. Some differences in substrate specificity were apparent. For example, N-propyl-4-piperidone was reduced by TR-II but not by TR-I. Conversely, 3-quinuclidinone and 8-thiabicyclo[3,2,1]octane-3-one were accepted as substrates by TR-I but hardly at all by TR-II. Both enzymes were shown to be class B oxidoreductases, which transfer the pro-S hydrogen of NAD(P)H to their substrates. Possible roles of these tropinone reductases in alkaloid biosynthesis are discussed.

摘要

托品酮是生物合成途径分支点处的一种烷胺中间体,该途径可通向各种托烷生物碱。检测到两种立体特异性明显不同的 NADPH 依赖性氧化还原酶,TR-I 和 TR-II,它们分别将托品酮还原为 3α-羟基托烷(托品)和 3β-羟基托烷(psi-托品),主要存在于产托烷生物碱植物的根部,但不存在于非生产性培养根中。两种还原酶均从黑茄的培养根中接近纯的状态下被分离出来并进行了表征。TR-I 反应是可逆的,而 TR-II 反应基本上是不可逆的,酮的还原比 psi-托品的醇氧化更有利。在对托品酮底物的亲和力和氨基酸修饰试剂的影响方面,两种还原酶之间存在明显差异。底物特异性也存在一些差异。例如,N-丙基-4-哌啶酮可被 TR-II 还原,但不能被 TR-I 还原。相反,3-喹诺啉酮和 8-硫杂双环[3.2.1]辛烷-3-酮可被 TR-I 接受为底物,但 TR-II 几乎不接受。这两种酶均被证明为 B 类氧化还原酶,可将 NAD(P)H 的 pro-S 氢转移到其底物上。讨论了这些托品酮还原酶在生物碱生物合成中的可能作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aeff/1075633/173a5922dd3b/plntphys00710-0301-a.jpg

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