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植物5-甲基硫代核糖激酶:来自黄羽扇豆(羽扇豆属黄羽扇豆L.)种子的部分纯化酶的性质

Plant 5-methylthioribose kinase: properties of the partially purified enzyme from yellow lupin (lupinus luteus L.) seeds.

作者信息

Guranowski A

机构信息

Institute of Biochemistry, Academy of Agriculture, Wolyńska 35, 60-637 Poznań, Poland.

出版信息

Plant Physiol. 1983 Apr;71(4):932-5. doi: 10.1104/pp.71.4.932.

Abstract

Activity of 5-methylthioribose kinase, the enzyme which catalyzes the ATP-dependent formation of 1-phospho-5-methylthioribose, has been revealed in the extracts from various higher plant species. Almost 2,000-fold-purified enzyme has been obtained from yellow lupin (Lupinus luteus L. cv Topaz) seed extract. Molecular weight of the native enzyme is 70,000 as judged by gel filtration. The lupin 5-methylthioribose kinase exhibits a strict requirement for divalent metal ions. Among the ions tested, only Mg(2+) and Mn(2+) acted as cofactors. The curve of kinase initial velocity versus pH reaches plateau at pH 10 to 10.5. The K(m) values calculated for 5-methylthioribose and ATP are 4.3 and 8.3 micromolar, respectively.Among nucleoside triphosphates tested as potential phosphate donors, only dATP could substitute in the reaction for ATP. 5-Isobutylthioribose, an analog of 5-methylthioribose, proved to be the gamma-ATP-phosphate acceptor, too. The compound inhibits competitively synthesis of 1-phospho-5-methylthioribose (K(i) = 1.4 micromolar). Lupin 5-methylthioribose kinase is completely and irreversibly inhibited by the antisulfhydryl reagent, p-hydroxymercuribenzoate. As in bacteria (Ferro, Barrett, Shapiro 1978 J Biol Chem 253: 6021-6025), the enzyme may be involved in a new, alternative pathway of methionine synthesis in plant tissues.

摘要

5-甲基硫代核糖激酶可催化依赖ATP形成1-磷酸-5-甲基硫代核糖,已在多种高等植物物种的提取物中发现其活性。从黄羽扇豆(Lupinus luteus L. cv Topaz)种子提取物中获得了纯度几乎提高了2000倍的该酶。通过凝胶过滤判断,天然酶的分子量为70,000。羽扇豆5-甲基硫代核糖激酶对二价金属离子有严格需求。在所测试的离子中,只有Mg(2+)和Mn(2+)可作为辅因子。激酶初始速度与pH的曲线在pH 10至10.5时达到平稳状态。计算得出5-甲基硫代核糖和ATP的K(m)值分别为4.3和8.3微摩尔。在作为潜在磷酸供体测试的核苷三磷酸中,只有dATP可在反应中替代ATP。5-异丁基硫代核糖是5-甲基硫代核糖的类似物,也被证明是γ-ATP-磷酸受体。该化合物竞争性抑制1-磷酸-5-甲基硫代核糖的合成(K(i)=1.4微摩尔)。羽扇豆5-甲基硫代核糖激酶被抗巯基试剂对羟基汞苯甲酸完全且不可逆地抑制。与细菌情况一样(Ferro, Barrett, Shapiro 1978 J Biol Chem 253: 6021-6025),该酶可能参与植物组织中蛋氨酸合成的一条新的替代途径。

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