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高等植物中的氰化物代谢:氰基丙氨酸水合酶是一种NIT4同源物。

Cyanide metabolism in higher plants: cyanoalanine hydratase is a NIT4 homolog.

作者信息

Piotrowski Markus, Volmer Julia Jutta

机构信息

Department of Plant Physiology, Ruhr-Universität Bochum, Germany.

出版信息

Plant Mol Biol. 2006 May;61(1-2):111-22. doi: 10.1007/s11103-005-6217-9.

Abstract

Cyanoalanine hydratase (E.C. 4.2.1.65) is an enzyme involved in the cyanide detoxification pathway of higher plants and catalyzes the hydrolysis of beta-cyano-L-alanine to asparagine. We have isolated the enzyme from seedlings of blue lupine (Lupinus angustifolius) to obtain protein sequence information for molecular cloning. In contrast to earlier reports, extracts of blue lupine cotyledons were found also to contain cyanoalanine-nitrilase (E.C. 3.5.5.4) activity, resulting in aspartic acid production. Both activities co-elute during isolation of cyanoalanine hydratase and are co-precipitated by an antibody directed against Arabidopsis thaliana nitrilase 4 (NIT4). The isolated cyanoalanine hydratase was sequenced by nanospray-MS/MS and shown to be a homolog of Arabidopsis thaliana and Nicotiana tabacum NIT4. Full-length cDNA sequences for two NIT4 homologs from blue lupine were obtained by PCR using degenerate primers and RACE-experiments. The recombinant LaNIT4 enzymes, like Arabidopsis NIT4, hydrolyze cyanoalanine to asparagine and aspartic acid but show a much higher cyanoalanine-hydratase activity. The two nitrilase genes displayed differential but overlapping expression. Taken together these data show that the so-called 'cyanoalanine hydratase' of plants is not a bacterial type nitrile hydratase enzyme but a nitrilase enzyme which can have a remarkably high nitrile-hydratase activity.

摘要

氰基丙氨酸水合酶(E.C. 4.2.1.65)是一种参与高等植物氰化物解毒途径的酶,催化β-氰基-L-丙氨酸水解成天冬酰胺。我们从蓝羽扇豆(Lupinus angustifolius)幼苗中分离出了这种酶,以获取用于分子克隆的蛋白质序列信息。与早期报道不同的是,发现蓝羽扇豆子叶提取物中也含有氰基丙氨酸腈水解酶(E.C. 3.5.5.4)活性,可产生天冬氨酸。在分离氰基丙氨酸水合酶的过程中,这两种活性共同洗脱,并且都被针对拟南芥腈水解酶4(NIT4)的抗体共沉淀。通过纳米喷雾-MS/MS对分离出的氰基丙氨酸水合酶进行测序,结果表明它是拟南芥和烟草NIT4的同源物。使用简并引物通过PCR和RACE实验获得了来自蓝羽扇豆的两个NIT4同源物的全长cDNA序列。重组的LaNIT4酶与拟南芥NIT4一样,可将氰基丙氨酸水解成天冬酰胺和天冬氨酸,但显示出更高的氰基丙氨酸水合酶活性。这两个腈水解酶基因表现出不同但重叠的表达。这些数据综合表明,植物中所谓的“氰基丙氨酸水合酶”不是细菌型腈水合酶,而是一种腈水解酶,其腈水合酶活性可能非常高。

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